Results for 'gene silencing'

998 found
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  1.  18
    On the Mattering of Silence and Avowal: Joseph Beuys’ Plight and Negative Presentation in Post-1945 Visual Art.Gene Ray - 2015 - Nordic Journal of Aesthetics 24 (49).
    Joseph Beuys’ installation Plight forcefully avows of the Nazi genocide by means of negative presentation. The work culminates a collective artistic investigation of negative sculptural strategies for representing traumatic history, opened by the Nouveaux Réalistes under the impact of Alain Resnais’ documentary film Nuit et Brouillard. This article outlines this history and analyzes Plight in the context of the ‘after Auschwitz’ crisis of representation and traditional culture theorized by Theodor W. Adorno. For Adorno, Auschwitz demonstrated threats to autonomous subjectivity posed (...)
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  2.  26
    Gene silencing is an ancient means of producing multiple phenotypes from the same genotype.Neil A. Youngson, Suyinn Chong & Emma Whitelaw - 2011 - Bioessays 33 (2):95-99.
  3.  11
    Gene silencing in non‐model insects: Overcoming hurdles using symbiotic bacteria for trauma‐free sustainable delivery of RNA interference.Miranda Whitten & Paul Dyson - 2017 - Bioessays 39 (3).
    Insight into animal biology and development provided by classical genetic analysis of the model organism Drosophila melanogaster was an incentive to develop advanced genetic tools for this insect. But genetic systems for the over one million other known insect species are largely undeveloped. With increasing information about insect genomes resulting from next generation sequencing, RNA interference is now the method of choice for reverse genetics, although it is constrained by the means of delivery of interfering RNA. A recent advance to (...)
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  4.  2
    Advancing evolution: Bacteria break down gene silencer to express horizontally acquired genes.Eduardo A. Groisman & Jeongjoon Choi - 2023 - Bioessays 45 (10):2300062.
    Horizontal gene transfer advances bacterial evolution. To benefit from horizontally acquired genes, enteric bacteria must overcome silencing caused when the widespread heat‐stable nucleoid structuring (H‐NS) protein binds to AT‐rich horizontally acquired genes. This ability had previously been ascribed to both anti‐silencing proteins outcompeting H‐NS for binding to AT‐rich DNA and RNA polymerase initiating transcription from alternative promoters. However, we now know that pathogenic Salmonella enterica serovar Typhimurium and commensal Escherichia coli break down H‐NS when this silencer is (...)
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  5.  29
    The changing faces of HP1: From heterochromatin formation and gene silencing to euchromatic gene expression.So Hee Kwon & Jerry L. Workman - 2011 - Bioessays 33 (4):280-289.
    Heterochromatin protein 1 (HP1) is a positive regulator of active transcription in euchromatin. HP1 was first identified inDrosophila melanogasteras a major component of heterochromatin. Most eukaryotes have at least three isoforms of HP1, which are conserved in overall structure but localize differentially to heterochromatin and euchromatin. Although initial studies revealed a key role for HP1 in heterochromatin formation and gene silencing, recent progress has shed light on additional roles for HP1 in processes such as euchromatic gene expression. (...)
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  6.  41
    Empowering plant evo-devo: Virus induced gene silencing validates new and emerging model systems.Verónica S. Di Stilio - 2011 - Bioessays 33 (9):711-718.
  7.  6
    Empowering plant evo-devo: Virus induced gene silencing validates new and emerging model systems.Verónica S. Di Stilio - 2011 - Bioessays 33 (9):711-718.
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  8.  18
    Empowering plant evo‐devo: Virus induced gene silencing validates new and emerging model systems.V. S. Di Stilio - 2011 - Bioessays 33 (10):783-783.
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  9.  17
    Global analysis of siRNA‐mediated transcriptional gene silencing.Harsh H. Kavi, Weiwu Xie, Harvey R. Fernandez & James A. Birchler - 2005 - Bioessays 27 (12):1209-1212.
    The RNAi machinery is not only involved with post‐transcriptional degradation of messenger RNAs, but also used for targeting of chromatin changes associated with transcriptional silencing. Two recent papers determine the global patterns of gene expression and chromatin modifications produced by the RNAi machinery in fission yeast.(9, 10) The major sites include the outer centromere repeats, the mating‐type locus and subtelomeric regions. By comparison, studies of Arabidopsis heterochromatin also implicate transposons as a major target for silencing. Analyses of (...)
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  10.  17
    Transcriptional silencing of homeotic genes in drosophila.Mariann Bienz & Jürg Müller - 1995 - Bioessays 17 (9):775-784.
    Homeotic genes are subject to transcriptional silencing, which prevents their expression in inappropriate body regions. Here, we shall focus on Drosophila, as little is known about this process in other organisms. Evidence is accumulating that silencing of Drosophila homeotic genes is conferred by two types of cis‐regulatory sequences: initiation (SIL‐I) and maintenance (SIL‐M) elements. The former contain target sites for transient repressors with a highly localised distribution in the early embryo and the latter for constitutive repressors that are (...)
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  11.  20
    Braking the silence: How heterochromatic gene repression is stopped in its tracks.David Donze & Rohinton T. Kamakaka - 2002 - Bioessays 24 (4):344-349.
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  12.  18
    Molecules of Silence: Effects of Meditation on Gene Expression and Epigenetics.Sabrina Venditti, Loredana Verdone, Anna Reale, Valerio Vetriani, Micaela Caserta & Michele Zampieri - 2020 - Frontiers in Psychology 11.
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  13.  11
    Polycomb Repressive Complexes in Hox Gene Regulation: Silencing and Beyond.Claudia Gentile & Marie Kmita - 2020 - Bioessays 42 (10):1900249.
    The coordinated expression of the Hox gene family encoding transcription factors is critical for proper embryonic development and patterning. Major efforts have thus been dedicated to understanding mechanisms controlling Hox expression. In addition to the temporal and spatial sequential activation of Hox genes, proper embryonic development requires that Hox genes get differentially silenced in a cell‐type specific manner as development proceeds. Factors contributing to Hox silencing include the polycomb repressive complexes (PRCs), which control gene expression through epigenetic (...)
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  14.  20
    Remembering silence.Leonie Ringrose & Renato Paro - 2001 - Bioessays 23 (7):566-570.
    Polycomb response elements (PREs) are regulatory switch elements that can direct the genes that they control to be either active or silenced. Once decided, this on or off state is maintained through subsequent cell divisions. We do not know how the switching works, or how it is copied to newly replicated chromosomes. Experiments that switch a silenced PRE to an active state have provided insights into both questions. A PRE switched experimentally can remember its previously silenced state and return to (...)
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  15.  11
    Silence of the fathers: Early X inactivation.Mimi K. Cheng & Christine M. Disteche - 2004 - Bioessays 26 (8):821-824.
    X chromosome inactivation is the mammalian answer to the dilemma of dosage compensation between males and females. The study of this fascinating form of chromosome-wide gene regulation has yielded surprising insights into early development and cellular memory. In the past few months, three papers1-3 reported unexpected findings about the paternal X chromosome (Xp). All three studies agree that the Xp is imprinted to become inactive earlier than ever suspected during embryonic development. Although apparently incomplete, this early form of inactivation (...)
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  16.  12
    White gene expression, repressive chromatin domains and homeotic gene regulation in Drosophila.Vincenzo Pirrotta & Luca Rastelli - 1994 - Bioessays 16 (8):549-556.
    The use of Drosophila chromosomal rearrangements and transposon constructs involving the white gene reveals the existence of repressive chromatin domains that can spread over considerable genomic distances. One such type of domain is found in heterochromatin and is responsible for classical position‐effect variegation. Another type of repressive domain is established, beginning at specific sequences, by complexes of Polycomb Group proteins. Such complexes, which normally regulate the expression of many genes, including the homeotic loci, are responsible for silencing, white (...)
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  17.  21
    Monoallelic gene expression and mammalian evolution.Barry Keverne - 2009 - Bioessays 31 (12):1318-1326.
    Monoallelic gene expression has played a significant role in the evolution of mammals enabling the expansion of a vast repertoire of olfactory receptor types and providing increased sensitivity and diversity. Monoallelic expression of immune receptor genes has also increased diversity for antigen recognition, while the same mechanism that marks a single allele for preferential rearrangement also provides a distinguishing feature for directing hypermutations. Random monoallelic expression of the X chromosome is necessary to balance gene dosage across sexes. In (...)
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  18.  19
    The Genes of Life and Death: A Potential Role for Placental-Specific Genes in Cancer.Erin C. Macaulay, Aniruddha Chatterjee, Xi Cheng, Bruce C. Baguley, Michael R. Eccles & Ian M. Morison - 2017 - Bioessays 39 (11):1700091.
    The placenta invades the adjacent uterus and controls the maternal immune system, like a cancer invades surrounding organs and suppresses the local immune response. Intriguingly, placental and cancer cells are globally hypomethylated and share an epigenetic phenomenon that is not well understood – they fail to silence repetitive DNA sequences that are silenced in healthy somatic cells. In the placenta, hypomethylation of retrotransposons has facilitated the evolution of new genes essential for placental function. In cancer, hypomethylation is thought to contribute (...)
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  19.  4
    Transcriptional silencing and translational control: key features of early germline development.Judith L. Leatherman & Thomas A. Jongens - 2003 - Bioessays 25 (4):326-335.
    The germ lineage has been studied for a long time because of its crucial role in the propagation and survival of a species. While this lineage, in contrast to the soma, is clearly unique in its totipotent ability to produce a new organism, it has now been found also to have specific features at the cellular level. One feature, a period of transcriptional quiescence in the early germ cell precursors, has been observed in both Drosophila and C. elegans, where it (...)
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  20.  10
    Intercalary heterochromatin and genetic silencing.Igor F. Zhimulev & Elena S. Belyaeva - 2003 - Bioessays 25 (11):1040-1051.
    We focus here on the intercalary heterochromatin (IH) of Drosophila melanogaster and, in particular, its molecular properties. In the polytene chromosomes of Drosophila, IH is represented by a reproducible set of dense bands scattered along the euchromatic arms. IH contains mainly unique DNA sequences, and shares certain features with other heterochromatin types such as pericentric, telomeric, and PEV‐induced heterochromatin, the inactive mammalian X‐chromosome and the heterochromatized male chromosome set in coccids. These features are transcriptional silencing, chromatin compactness, late DNA (...)
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  21.  8
    Transvection and long‐distance gene regulation.Vincenzo Pirrotta - 1990 - Bioessays 12 (9):409-414.
    Numerous genes contain regulatory elements located many tens of kilobases away from the promoter they control. Specific mechanisms must be required to ensure that such distant elements can find and interact with their proper targets but not with extraneous genes. This review explores the connections between transvection phenomena, the activation of domains of homeotic gene expression, position effect variegation and silencers. These various examples of long‐distance effects suggest that, in all cases, related forms of chromatin packaging may be involved.
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  22.  24
    Factor mediated gene priming in pluripotent stem cells sets the stage for lineage specification.Niall Dillon - 2012 - Bioessays 34 (3):194-204.
    Priming of lineage‐specific genes in pluripotent embryonic stem cells facilitates rapid and coordinated activation of transcriptional programmes during differentiation. There is growing evidence that pluripotency factors play key roles in priming tissue‐specific genes and in the earliest stages of lineage commitment. As differentiation progresses, pluripotency factors are replaced at some primed genes by related lineage‐specific factors that bind to the same sequences and maintain epigenetic priming until the gene is activated. Polycomb and trithorax group proteins bind many genes in (...)
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  23.  16
    Beyond transcriptional silencing: Is methylcytosine a widely conserved eukaryotic DNA elimination mechanism?John R. Bracht - 2014 - Bioessays 36 (4):346-352.
    Methylation of cytosine DNA residues is a well‐studied epigenetic modification with important roles in formation of heterochromatic regions of the genome, and also in tissue‐specific repression of transcription. However, we recently found that the ciliate Oxytricha uses methylcytosine in a novel DNA elimination pathway important for programmed genome restructuring. Remarkably, mounting evidence suggests that methylcytosine can play a dual role in ciliates, repressing gene expression during some life‐stages and directing DNA elimination in others. In this essay, I describe these (...)
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  24.  10
    Regulation of mammalian gene expression by retroelements and non‐coding tandem repeats.Nikolai V. Tomilin - 2008 - Bioessays 30 (4):338-348.
    Genomes of higher eukaryotes contain abundant non‐coding repeated sequences whose overall biological impact is unclear. They comprise two categories. The first consists of retrotransposon‐derived elements. These are three major families of retroelements (LINEs, SINEs and LTRs). SINEs are clustered in gene‐rich regions and are found in promoters of genes while LINEs are concentrated in gene‐poor regions and are depleted from promoters. The second class consists of non‐coding tandem repeats (satellite DNAs and TTAGGG arrays), which are associated with mammalian (...)
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  25.  31
    Detection of unpaired DNA at meiosis results in RNA‐mediated silencing.Michael J. Hynes & Richard B. Todd - 2003 - Bioessays 25 (2):99-103.
    During meiosis, homologous chromosomes must pair in order to permit recombination and correct chromosome segregation to occur. Two recent papers1,2 show that meiotic pairing is also important for correct gene expression during meiosis. They describe data for the filamentous fungus Neurospora crassa that show that a lack of pairing generated by ectopic integration of genes can result in silencing of genes expressed during meiosis. This can result in aberrant meioses whose defects are specific to the function of the (...)
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  26.  14
    Decisive factors: a transcription activator can overcome heterochromatin silencing.Joel C. Eissenberg - 2001 - Bioessays 23 (9):767-771.
    Eukaryotes organize certain chromosomal intervals into domains capable of si lencing most genes. Examples of silencing domains include the HML/HMR loci and subtelomeric chromatin in yeast, the Barr body X chromosome in mammals, and the pericentric heterochromatin of Drosophila. Silencing chromatin is often correlated with more regularized nucleosomal array than that found in active chromatin, and transcriptional activators appear to be missing from their target sites in silent chromatin. In Drosophila, gene silencing by heterochromatin is often (...)
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  27.  23
    Breaking the silence: three bHLH proteins direct cell‐fate decisions during stomatal development.Lynn Jo Pillitteri & Keiko U. Torii - 2007 - Bioessays 29 (9):861-870.
    Stomata are microscopic pores on the surface of land plants used for gas and water vapor exchange. A pair of highly specialized guard cells surround the pore and adjust pore size. Studies in Arabidopsis have revealed that cell–cell communication is essential to coordinate the asymmetric cell divisions required for proper stomatal patterning. Initial research in this area identified signaling molecules that negatively regulate stomatal differentiation. However, genes promoting cell‐fate transition leading to mature guard cells remained elusive. Now, three closely related (...)
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  28.  30
    Epigenetic regulation of Hox gene activation: the waltz of methyls.Natalia Soshnikova & Denis Duboule - 2008 - Bioessays 30 (3):199-202.
    Genetic studies have revealed that the antagonistic interplay between PcG and TrxG/MLL complexes is essential for the proper maintenance of vertebrate Hox gene expression in time and space. Hox genes must be silenced in totipotent embryonic stem cells and, in contrast, rapidly activated during embryogenesis. Here we discuss some recently published articles1-4 that propose a novel mechanism for the induction of Hox gene transcription. These studies report a new family of histone demethylases that remove H3K27me3/me2 repressive marks at (...)
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  29.  8
    Eyeing tumorigenesis: Notch signaling and epigenetic silencing of Rb in Drosophila.Håkan Axelson - 2006 - Bioessays 28 (7):692-695.
    Notch signaling plays an essential role in the processes of embryogenesis and cellular differentiation, and it is believed that the oncogenic effects of dysregulated Notch signaling are an anomalous reflection of the normal functions of this cascade. Nonetheless, the cellular events associated with oncogenic Notch signaling have thus far remained elusive. In a recent report, Ferres‐Marco et al.1 described how they used the Drosphila eye as a model system and found that elevated Notch signaling in combination with activation of components (...)
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  30.  6
    Shaping eukaryotic epigenetic systems by horizontal gene transfer.Irina R. Arkhipova, Irina A. Yushenova & Fernando Rodriguez - 2023 - Bioessays 45 (7):2200232.
    DNA methylation constitutes one of the pillars of epigenetics, relying on covalent bonds for addition and/or removal of chemically distinct marks within the major groove of the double helix. DNA methyltransferases, enzymes which introduce methyl marks, initially evolved in prokaryotes as components of restriction‐modification systems protecting host genomes from bacteriophages and other invading foreign DNA. In early eukaryotic evolution, DNA methyltransferases were horizontally transferred from bacteria into eukaryotes several times and independently co‐opted into epigenetic regulatory systems, primarily via establishing connections (...)
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  31.  31
    Too Many False Targets for MicroRNAs: Challenges and Pitfalls in Prediction of miRNA Targets and Their Gene Ontology in Model and Non‐model Organisms.Arie Fridrich, Yael Hazan & Yehu Moran - 2019 - Bioessays 41 (4):1800169.
    Short (“seed”) or extended base pairing between microRNAs (miRNAs) and their target RNAs enables post‐transcriptional silencing in many organisms. These interactions allow the computational prediction of potential targets. In model organisms, predicted targets are frequently validated experimentally; hence meaningful miRNA‐regulated processes are reported. However, in non‐models, these reports mostly rely on computational prediction alone. Many times, further bioinformatic analyses such as Gene Ontology (GO) enrichment are based on these in silico projections. Here such approaches are reviewed, their caveats (...)
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  32.  25
    A cellular survival switch: poly(ADP‐ribosyl)ation stimulates DNA repair and silences transcription.Mathias Ziegler & Shiao Li Oei - 2001 - Bioessays 23 (6):543-548.
    Poly(ADP‐ribosyl)ation is a post‐translational modification occurring in the nucleus. The most abundant and best‐characterized enzyme catalyzing this reaction, poly(ADP‐ribose) polymerase 1 (PARP1), participates in fundamental nuclear events. The enzyme functions as molecular “nick sensor”. It binds with high affinity to DNA single‐strand breaks resulting in the initiation of its catalytic activity. Activated PARP1 promotes base excision repair. In addition, PARP1 modifies several transcription factors and thereby precludes their binding to DNA. We propose that a major function of PARP1 includes the (...)
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  33.  9
    Dynamics of Positive Frequency Dependent Selection Triggers Selection for Silence.I. Hashem, V. De Buck & J. Van Impe - 2022 - Complexity 2022:1-11.
    Positive frequency dependent selection is a natural selection regime where the fitness of a phenotype increases with its frequency in the population. Examples can be typically found in the spread of disease tolerance strategies in a population. A characterizing feature of PFDS is that the focal allele may experience favorable selection only when it becomes more frequent in the population, while being selected against when it is rare. In this paper, by applying a solution concept from evolutionary game theory, we (...)
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  34.  10
    Do repeated arrays of regulatory small‐RNA genes elicit genomic imprinting?Stéphane Labialle & Jérôme Cavaillé - 2011 - Bioessays 33 (8):565-573.
    The basic premise of the host‐defense theory is that genomic imprinting, the parent‐of‐origin expression of a subset of mammalian genes, derives from mechanisms originally dedicated to silencing repeated and retroviral‐like sequences that deeply colonized mammalian genomes. We propose that large clusters of tandemly‐repeated C/D‐box small nucleolar RNAs (snoRNAs) or microRNAs represent a novel category of sequences recognized as “genomic parasites”, contributing to the emergence of genomic imprinting in a subset of chromosomal regions that contain them. Such a view is (...)
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  35.  10
    How does noncoding transcription regulate Hox genes?Adelheid Lempradl & Leonie Ringrose - 2008 - Bioessays 30 (2):110-121.
    Noncoding RNA has arrived at centre stage in recent years with the discovery of “hidden transcriptomes” in many higher organisms. Over two decades ago, noncoding transcripts were discovered in Drosophila Hox complexes, but their function has remained elusive. Recent studies1-3 have examined the role of these noncoding RNAs in Hox gene regulation, and have generated a fierce debate as to whether the noncoding transcripts are important for silencing or activation. Here we review the evidence, and show that, by (...)
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  36. Adaptable robots.Gene Korienek & William Uzgalis - 2002 - In James Moor & Terrell Ward Bynum (eds.), Cyberphilosophy: the intersection of philosophy and computing. Malden, MA: Blackwell.
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  37.  13
    Fitting structure to function in gene regulatory networks.Ellen V. Rothenberg - 2017 - History and Philosophy of the Life Sciences 39 (4):37.
    Cascades of transcriptional regulation are the common source of the forward drive in all developmental systems. Increases in complexity and specificity of gene expression at successive stages are based on the collaboration of varied combinations of transcription factors already expressed in the cells to turn on new genes, and the logical relationships between the transcription factors acting and becoming newly expressed from stage to stage are best visualized as gene regulatory networks. However, gene regulatory networks used in (...)
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  38.  68
    Imprinting evolution and the price of silence.Susan K. Murphy & Randy L. Jirtle - 2003 - Bioessays 25 (6):577-588.
    In contrast to the biallelic expression of most genes, expression of genes subject to genomic imprinting is monoallelic and based on the sex of the transmitting parent. Possession of only a single active allele can lead to deleterious health consequences in humans. Aberrant expression of imprinted genes, through either genetic or epigenetic alterations, can result in developmental failures, neurodevelopmental and neurobehavioral disorders and cancer. The evolutionary emergence of imprinting occurred in a common ancestor to viviparous mammals after divergence from the (...)
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  39. On the distinction between modern and traditional African aesthetics.Gene Blocker - 1998 - In P. H. Coetzee & A. J. P. Roux (eds.), Philosophy from Africa: A text with readings 2nd Edition. Routledge.
     
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  40.  14
    Agape: An Ethical Analysis.Gene H. Outka - 1972 - Yale University Press.
    This study is the most comprehensive account to date of modern treatments of the love commandment. Gene Outka examines the literature on agape from Nygren's Agape and Eros in 1930. Both Roman Catholic and Protestant writings are considered, including those of D'Arcy, Niebuhr, Ramsey, Tillich, and above all, Karl Barth. The first seven chapters focus on the principal treatments in the theological literature as they relate to major topics in ethical theory. The last chapter explores further the basic normative (...)
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  41. Yoga: caminho para Deus. Hermógenes - 1975 - Rio de Janeiro: Distribuidora Record.
     
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  42.  75
    The influence of stated organizational concern upon ethical decision making.Gene R. Laczniak & Edward J. Inderrieden - 1987 - Journal of Business Ethics 6 (4):297 - 307.
    This experimental study evaluated the influence of stated organizational concern for ethical conduct upon managerial behavior. Using an in-basket to house the manipulation, a sample of 113 MBA students with some managerial experience reacted to scenarios suggesting illegal conduct and others suggesting only unethical behavior. Stated organizational concern for ethical conduct was varied from none (control group) to several other situations which included a high treatment consisting of a Code of Ethics, an endorsement letter by the CEO and specific sanctions (...)
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  43. John Rawls' Theory of Social Justice.Gene Blocker & Elizabeth Smith (eds.) - 1980 - Ohio University Press.
  44. What Does It Mean to Solve Problems?Gene P. Agre - 1983 - Journal of Thought 18 (1):92-104.
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  45. Individual Difference Variables, Ethical Judgments, and Ethical Behavioral Intentions.Gene Brown - 1999 - Business Ethics Quarterly 9 (2):183-205.
    Abstract:This study examined the relationship between the individual difference variables of personal moral philosophy, locus of control, Machiavellianism, and just world beliefs and ethical judgments and behavioral intentions. A sample of 602 marketing practitioners participated in the study. Structural equation modeling was used to test hypothesized relationships. The results either fully or partially supported hypothesized direct effects for idealism, relativism, and Machiavellianism. Findings also suggested that Machiavellianism mediated the relationship between individual difference variables and ethical judgments/behavioral intentions.
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  46.  16
    The ethical journalist: making responsible decisions in the pursuit of news.Gene Foreman - 2010 - Malden, MA: Wiley-Blackwell.
    The Ethical Journalist gives aspiring journalists the tools they need to make responsible professional decisions. Provides a foundation in applied ethics in journalism Examines the subject areas where ethical questions most frequently arise in modern practice Incorporates the views of distinguished print, broadcast and online journalists, exploring such critical issues as race, sex, and the digitalization of news sources Illustrated with 24 real-life case studies that demonstrate how to think in 'shades of gray' rather than 'black and white' Includes questions (...)
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  47. Hans-Herman Hoppe's argumentation ethic: A critique.Gene Callahan & Robert P. Murphy - 2006 - Journal of Libertarian Studies 20 (2):53-64.
    ONE OF THE MOST prominent theorists of anarcho-capitalism is Hans- Hermann Hoppe. In what is perhaps his most famous result, the argumentation ethic for libertarianism, he purports to establish an a priori defense of the justice of a social order based exclusively on pri- vate property. Hoppe claims that all participants in a debate must presuppose the libertarian principle that every person owns himself, since the principle underlies the very concept of argumentation. Some libertarians (e.g., Rothbard 1988) have celebrated Hoppe’s (...)
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  48. Fostering ethical marketing decisions.Gene R. Laczniak & Patrick E. Murphy - 1991 - Journal of Business Ethics 10 (4):259 - 271.
    This paper begins by examining several potentially unethical recent marketing practices. Since most marketing managers face ethical dilemmas during their careers, it is essential to study the moral consequences of these decisions. A typology of ways that managers might confront ethical issues is proposed. The significant organizational, personal and societal costs emanting from unethical behavior are also discussed. Both relatively simple frameworks and more comprehensive models for evaluating ethical decisions in marketing are summarized. Finally, the fact that organizational commitment to (...)
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  49. Winch on Following a Rule: A Wittgensteinian Critique of Oakeshott.Gene Callahan - 2012 - Collingwood and British Idealism Studies 18 (2):167-175.
    Peter Winch famously critiqued Michael Oakeshott's view of human conduct. He argued that Oakeshott had missed the fact that truly human conduct is conduct that 'follows a rule.' This paper argues that, as is sometimes the case with Oakeshott, what seems, on the surface, to be a disagreement with another, somewhat compatible thinker about a matter of detail in some social theory in fact turns out to point to a deeper philosophical divide. In particular, I contend, Winch, as typical of (...)
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  50.  7
    Oakeshott on Rome and America.Gene Callahan - 2012 - Imprint Academic.
    The political systems of the Roman Republic were based almost entirely on tradition, “the way of the ancestors”, rather than on a written constitution. While the founders of the American Republic looked to ancient Rome as a primary model for their enterprise, nevertheless, in line with the rationalist spirit of their age, the American founders attempted to create a rational set of rules that would guide the conduct of American politics, namely, the US Constitution.These two examples offer a striking case (...)
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