A functional interaction between the histone deacetylase Rpd3 and the corepressor Groucho in Drosophila development

  1. Guoqing Chen,
  2. Joseph Fernandez,
  3. Sheenah Mische, and
  4. Albert J. Courey
  1. Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095 USA; The Rockefeller University, The Protein/DNA Technology Center, New York, New York 10021 USA

Abstract

The Drosophila gene groucho (gro) encodes a transcriptional corepressor that has critical roles in many development processes. In an effort to illuminate the mechanism of Gro-mediated repression, we have employed Gro as an affinity reagent to purify Gro-binding proteins from embryonic nuclear extracts. One of these proteins was found to be the histone deacetylase Rpd3. Protein–protein interaction assays suggest that Gro and Rpd3 form a complex in vivo and that they interact directly via the glycine/proline rich (GP) domain in Gro. Cell culture assays demonstrate that Rpd3 potentiates repression by the GP domain. Furthermore, experiments employing a histone deacetylase inhibitor, as well as a catalytically inactive form of Rpd3, imply that histone deacetylase activity is required for efficient Gro-mediated repression. Finally, mutations ingro and rpd3 have synergistic effects on embryonic lethality and pattern formation. These findings support the view that Gro mediates repression, at least in part, by the direct recruitment of the histone deacetylase Rpd3 to the template, where it can modulate local chromatin structure. They also provide evidence for a specific role of Rpd3 in early development.

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Footnotes

  • Corresponding author.

  • E-MAIL courey{at}chem.ucla.edu; FAX (310) 206-4038.

    • Received June 8, 1999.
    • Accepted July 19, 1999.
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