Scientific article
English

A cytosolic NAD-dependent deacetylase, Hst2p, can modulate nucleolar and telomeric silencing in yeast

Published inEMBO Journal, vol. 20, no. 1-2, p. 197-209
Publication date2001
Abstract

In budding yeast, the silent information regulator Sir2p is a nuclear NAD-dependent deacetylase that is essential for both telomeric and rDNA silencing. All eukaryotic species examined to date have multiple homologues of Sir two (HSTs), which share a highly conserved globular core domain. Here we report that yeast Hst2p and a mammalian Hst2p homologue, hSirT2p, are cytoplasmic in yeast and human cells, in contrast to yHst1p and ySir2p which are exclusively nuclear. Although yHst2p cannot restore silencing in a sir2 deletion, overexpression of yHst2p influences nuclear silencing events in a SIR2 strain, derepressing subtelomeric silencing while increasing repression in the rDNA. In contrast, a form of ySir2p carrying a point mutation in the conserved core domain disrupts both telomeric position effect (TPE) and rDNA repression at low expression levels. This argues that non-nuclear yHst2p can compete for a substrate or ligand specifically required for telomeric, and not rDNA repression.

Keywords
  • Homologues of Sir2p
  • Nucleolus
  • SIR2
  • Telomeric silencing
  • Yeast
Affiliation entities Not a UNIGE publication
Citation (ISO format)
PERROD, Severine et al. A cytosolic NAD-dependent deacetylase, Hst2p, can modulate nucleolar and telomeric silencing in yeast. In: EMBO Journal, 2001, vol. 20, n° 1-2, p. 197–209. doi: 10.1093/emboj/20.1.197
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Article (Published version)
accessLevelRestricted
Identifiers
Journal ISSN0261-4189
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