Abstract
Histone deacetylase HDA1, the prototype for the class II mammalian deacetylases, is likely the catalytic subunit of the HDA1-containing complex that is involved in TUP1-specific repression and global deacetylation in yeast. Although the class I RPD3-like enzymatic complexes have been well characterized, little is known about the identity and interactions of the factors that associate to form the HDA1 complex. In this paper, we identify related HDA2 and HDA3 proteins that are found in the HDA1 complex and show that HDA1 interacts with itself and with the HDA2-HDA3 subcomplex to form a likely tetramer. These interactions are necessary for catalytic activity because mutations in any of the three components disrupt activity both in vitro and in vivo. In this respect the HDA1 complex differs from yeast RPD3, which has components such as SIN3 that are not essential for activity in vitro, and yeast HOS3, which has intrinsic in vitro activity as a homodimer in the absence of other subunits.
MeSH Terms
Adenosine Triphosphatases/genetics
Base Sequence
Cation Transport Proteins
DNA Primers
Histone Deacetylases/metabolism
Isoenzymes/metabolism
Precipitin Tests
Promoter Regions, Genetic
Protein Binding
Saccharomyces cerevisiae/enzymology
Saccharomyces cerevisiae Proteins
Sodium-Potassium-Exchanging ATPase
Chemicals
Cation Transport Proteins
DNA Primers
ENA1 protein, S cerevisiae
Isoenzymes
Saccharomyces cerevisiae Proteins
Histone Deacetylases
Adenosine Triphosphatases
Sodium-Potassium-Exchanging ATPase
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Wu J
Department of Biological Chemistry, University of California School of Medicine and the Molecular Biology Institute, Boyer Hall, University of California, Los Angeles, CA 90095, USA.
Carmen A A
Kobayashi R
Suka N
Grunstein M
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