The Vestigial and Scalloped proteins act together to directly regulate wing-specific gene expression in Drosophila

  1. Georg Halder1,4,
  2. Patricia Polaczyk1,4,
  3. Mary Ellen Kraus1,
  4. Angela Hudson1,
  5. Jaeseob Kim1,3,
  6. Allen Laughon2, and
  7. Sean Carroll1,5
  1. 1Howard Hughes Medical Institute and Laboratory of Molecular Biology, and 2Laboratory of Genetics, University of Wisconsin, Madison, Wisconsin 53706 USA; 3Institute for Molecular Biology and Genetics, Seoul National University, Kwanak-Ku, Seoul, 151-742, Korea

Abstract

A small number of major regulatory (selector) genes have been identified in animals that control the development of particular organs or complex structures. In Drosophila, the vestigialgene is required for wing formation and is able to induce wing-like outgrowths on other structures. However, the molecular function of the nuclear Vestigial protein, which bears no informative similarities to other proteins, was unknown. Here, we show that Vestigial requires the function of the Scalloped protein, a member of the TEA family of transcriptional regulators, to directly activate the expression of genes involved in wing morphogenesis. Genetic and molecular analyses reveal that Vestigial regulates wing identity by forming a complex with the Scalloped protein that binds sequence specifically to essential sites in wing-specific enhancers. These enhancers also require the direct inputs of signaling pathways, and the response of an enhancer can be switched to another pathway through changes in signal-transducer binding sites. Combinatorial regulation by selector proteins and signal transducers is likely to be a general feature of the tissue-specific control of gene expression during organogenesis.

Keywords

Footnotes

  • 4 These authors contributed equally to this work.

  • 5 Corresponding author.

  • E-MAIL sbcarrol{at}facstaff.wisc.edu; FAX (608) 262-9343.

    • Received September 17, 1998.
    • Accepted November 6, 1998.
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