Conservation of Heterochromatin Protein 1 Function

Author:

Wang Guozheng1,Ma Alicia1,Chow Cheok-man2,Horsley David1,Brown Nicholas R.3,Cowell Ian G.14,Singh Prim B.14

Affiliation:

1. Chromatin Function Laboratory, The Babraham Institute, Babraham, Cambridge CB2 4AT,1

2. Microbiology Unit, 2 Department of Biochemistry, University of Oxford, Oxford OX1 3QU, United Kingdom

3. Laboratory of Molecular Biophysics 3 and

4. Nuclear Reprogramming Laboratory, Division of Gene Expression and Development, Roslin Institute (Edinburgh), Midlothian, Scotland EH25 9PS, 4 and

Abstract

ABSTRACT Heterochromatin represents a cytologically visible state of heritable gene repression. In the yeast, Schizosaccharomyces pombe , the swi6 gene encodes a heterochromatin protein 1 (HP1)-like chromodomain protein that localizes to heterochromatin domains, including the centromeres, telomeres, and the donor mating-type loci, and is involved in silencing at these loci. We identify here the functional domains of swi6p and demonstrate that the chromodomain from a mammalian HP1-like protein, M31, can functionally replace that of swi6p, showing that chromodomain function is conserved from yeasts to humans. Site-directed mutagenesis, based on a modeled three-dimensional structure of the swi6p chromodomain, shows that the hydrophobic amino acids which lie in the core of the structure are critical for biological function. Gel filtration, gel overlay experiments, and mass spectroscopy show that HP1 proteins can self-associate, and we suggest that it is as oligomers that HP1 proteins are incorporated into heterochromatin complexes that silence gene activity.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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