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English
Silencers and locus control regions: opposite sides of the same coin
scientific article published on April 1997
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instance of
scholarly article
1 reference
stated in
Europe PubMed Central
PubMed ID
9149531
retrieved
1 October 2017
review article
1 reference
stated in
Europe PubMed Central
title
Silencers and locus control regions: opposite sides of the same coin
(English)
1 reference
stated in
Europe PubMed Central
PubMed ID
9149531
retrieved
1 October 2017
author name string
Kamakaka RT
series ordinal
1
1 reference
stated in
Europe PubMed Central
PubMed ID
9149531
retrieved
1 October 2017
publication date
1 April 1997
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stated in
Europe PubMed Central
PubMed ID
9149531
retrieved
1 October 2017
number of pages
5
1 reference
based on heuristic
inferred from page(s)
published in
Trends in Biochemical Sciences
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stated in
Europe PubMed Central
PubMed ID
9149531
retrieved
1 October 2017
volume
22
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stated in
Europe PubMed Central
PubMed ID
9149531
retrieved
1 October 2017
page(s)
124-128
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stated in
Europe PubMed Central
PubMed ID
9149531
retrieved
1 October 2017
issue
4
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stated in
Europe PubMed Central
PubMed ID
9149531
retrieved
1 October 2017
cites work
Heterochromatin and gene expression in Drosophila
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Transcriptional enhancers act in cis to suppress position-effect variegation
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Initiation of transcription by RNA polymerase II: a multi-step process.
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Chromatin unfolds
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7 January 2021
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Contacts in context: promoter specificity and macromolecular interactions in transcription
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Regulation of inducible and tissue-specific gene expression
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Chromatin domains as potential units of eukaryotic gene function
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Age-dependent silencing of globin transgenes in the mouse
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Tissue-specific factors additively increase the probability of the all-or-none formation of a hypersensitive site.
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Heterochromatin effects on the frequency and duration of LCR-mediated gene transcription.
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Dissection of the locus control function located on the chicken lysozyme gene domain in transgenic mice.
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Synergistic regulation of human beta-globin gene switching by locus control region elements HS3 and HS4.
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Silencing and heritable domains of gene expression
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Silencers and domains of generalized repression
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Histone H3 and H4 N-termini interact with SIR3 and SIR4 proteins: a molecular model for the formation of heterochromatin in yeast
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Role of interactions between the origin recognition complex and SIR1 in transcriptional silencing
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Silencers are required for inheritance of the repressed state in yeast.
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Role of DNA replication in the repression of silent mating type loci in yeast
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7 January 2021
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The origin recognition complex has essential functions in transcriptional silencing and chromosomal replication
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Epigenetic inheritance of transcriptional states in S. cerevisiae
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Epigenetic switching of transcriptional states: cis- and trans-acting factors affecting establishment of silencing at the HMR locus in Saccharomyces cerevisiae
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Mutations in the HML E silencer of Saccharomyces cerevisiae yield metastable inheritance of transcriptional repression
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DNA replication in vitro erases a Xenopus 5S RNA gene transcription complex.
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Locus control region function and heterochromatin-induced position effect variegation
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The role of stable complexes that repress and activate eucaryotic genes
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Potentiation of RNA polymerase II transcription by Gal4-VP16 during but not after DNA replication and chromatin assembly
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Modifiers of position effect are shared between telomeric and silent mating-type loci in S. cerevisiae.
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Silent domains are assembled continuously from the telomere and are defined by promoter distance and strength, and by SIR3 dosage
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Overcoming telomeric silencing: a trans-activator competes to establish gene expression in a cell cycle-dependent way.
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A role for CDC7 in repression of transcription at the silent mating-type locus HMR in Saccharomyces cerevisiae
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Disturbance of normal cell cycle progression enhances the establishment of transcriptional silencing in Saccharomyces cerevisiae
1 reference
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Specific repression of the yeast silent mating locus HMR by an adjacent telomere.
1 reference
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Action of a RAP1 carboxy-terminal silencing domain reveals an underlying competition between HMR and telomeres in yeast
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Evidence for silencing compartments within the yeast nucleus: a role for telomere proximity and Sir protein concentration in silencer-mediated repression
1 reference
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Crossref
reference URL
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retrieved
7 January 2021
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Identifiers
DOI
10.1016/S0968-0004(96)10074-8
1 reference
stated in
Europe PubMed Central
PubMed ID
9149531
retrieved
1 October 2017
PubMed ID
9149531
1 reference
stated in
Europe PubMed Central
PubMed ID
9149531
retrieved
1 October 2017
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