Literature DB >> 19179643

The functional importance of telomere clustering: global changes in gene expression result from SIR factor dispersion.

Angela Taddei1, Griet Van Houwe, Shigeki Nagai, Ionas Erb, Erik van Nimwegen, Susan M Gasser.   

Abstract

Budding yeast telomeres and cryptic mating-type loci are enriched at the nuclear envelope, forming foci that sequester silent information regulators (SIR factors), much as heterochromatic chromocenters in higher eukaryotes sequester HP1. Here we examine the impact of such subcompartments for regulating transcription genome-wide. We show that the efficiency of subtelomeric reporter gene repression depends not only on the strength of SIR factor recruitment by cis-acting elements, but also on the accumulation of SIRs in such perinuclear foci. To monitor the effects of disrupting this subnuclear compartment, we performed microarray analyses under conditions that eliminate telomere anchoring, while preserving SIR complex integrity. We found 60 genes reproducibly misregulated. Among those with increased expression, 22% were within 20 kb of a telomere, confirming that the nuclear envelope (NE) association of telomeres helps repress natural subtelomeric genes. In contrast, loci that were down-regulated were distributed over all chromosomes. Half of this ectopic repression was SIR complex dependent. We conclude that released SIR factors can promiscuously repress transcription at nontelomeric genes despite the presence of "anti-silencing" mechanisms. Bioinformatic analysis revealed that promoters bearing the PAC (RNA Polymerase A and C promoters) or Abf1 binding consenses are consistently down-regulated by mislocalization of SIR factors. Thus, the normal telomeric sequestration of SIRs both favors subtelomeric repression and prevents promiscuous effects at a distinct subset of promoters. This demonstrates that patterns of gene expression can be regulated by changing the spatial distribution of repetitive DNA sequences that bind repressive factors.

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Year:  2009        PMID: 19179643      PMCID: PMC2665780          DOI: 10.1101/gr.083881.108

Source DB:  PubMed          Journal:  Genome Res        ISSN: 1088-9051            Impact factor:   9.043


  105 in total

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4.  Position effect at S. cerevisiae telomeres: reversible repression of Pol II transcription.

Authors:  D E Gottschling; O M Aparicio; B L Billington; V A Zakian
Journal:  Cell       Date:  1990-11-16       Impact factor: 41.582

5.  Characterization of a "silencer" in yeast: a DNA sequence with properties opposite to those of a transcriptional enhancer.

Authors:  A H Brand; L Breeden; J Abraham; R Sternglanz; K Nasmyth
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6.  Global position and recruitment of HATs and HDACs in the yeast genome.

Authors:  François Robert; Dmitry K Pokholok; Nancy M Hannett; Nicola J Rinaldi; Mark Chandy; Alex Rolfe; Jerry L Workman; David K Gifford; Richard A Young
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Authors:  Angela Taddei; Florence Hediger; Frank R Neumann; Christoph Bauer; Susan M Gasser
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  75 in total

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3.  Excess histone levels mediate cytotoxicity via multiple mechanisms.

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Review 4.  Transcriptional regulation at the yeast nuclear envelope.

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Journal:  Nucleus       Date:  2013-09-06       Impact factor: 4.197

5.  RNA polymerase II (RNAP II)-associated factors are recruited to tRNA loci, revealing that RNAP II- and RNAP III-mediated transcriptions overlap in yeast.

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6.  Life on the edge: telomeres and persistent DNA breaks converge at the nuclear periphery.

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Review 7.  Epigenetics in Saccharomyces cerevisiae.

Authors:  Michael Grunstein; Susan M Gasser
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Review 8.  Something silent this way forms: the functional organization of the repressive nuclear compartment.

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9.  Clustering and protein dynamics of Drosophila melanogaster telomeres.

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Journal:  Genetics       Date:  2013-07-26       Impact factor: 4.562

10.  Telomere shortening relaxes X chromosome inactivation and forces global transcriptome alterations.

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