Drosophila TRP channels require a protein with a distinctive motif encoded by the inaF locus

  1. Yuzhong Cheng and
  2. Howard A. Nash*
  1. Laboratory of Molecular Biology, National Institute of Mental Health, National Institutes of Health, Bethesda, MD 20892
  1. Contributed by Howard A. Nash, September 4, 2007 (received for review August 6, 2007)

Abstract

In both vertebrates and invertebrates, ion channels of the TRP superfamily are known to be influenced by a variety of accessory factors, but the list of interacting proteins is acknowledged to be incomplete. Although previous work showed that Drosophila TRP function is disrupted by mutations in the inaF locus, the mechanism of this effect has remained obscure. Here we show that a previously overlooked small protein, INAF-B, is encoded by the locus and fulfills its critical role in retinal physiology. The 81-aa INAF-B gene product is an integral membrane protein that colocalizes to rhabdomeres along with TRP channels. Immunoprecipitation experiments demonstrate that the two proteins participate in a complex, and blotting experiments show that neither protein survives in the absence of the other. Both proteins are normally part of a large supramolecular assembly, the signalplex, but their interaction persists even in the absence of the scaffold for this structure. The inaF locus encodes three other proteins, each of which has diverged from INAF-B except for a 32-aa block of residues that encompasses a transmembrane domain. This conserved sequence defines an inaF motif, representatives of which are found in proteins from organisms as diverse as nematodes, fish, and humans. Given the role of INAF-B, these proteins are good candidates for interacting partners of other members of the TRP superfamily.

Footnotes

  • *To whom correspondence should be addressed at:
    Building 35, Room 1B-1002, 9000 Rockville Pike, National Institute of Mental Health, National Institutes of Health, Bethesda, MD 20892-3736.
    E-mail: howardnash{at}mail.nih.gov
  • Author contributions: Y.C. and H.A.N. designed research; Y.C. performed research; Y.C. and H.A.N. analyzed data; and Y.C. and H.A.N. wrote the paper.

  • The authors declare no conflict of interest.

  • Data deposition: Data deposition: The sequences reported in this paper have been deposited in the GenBank database [accession nos. EU146932 (inaF-RA), EU146933 (inaF-RD), EU146934 (inaF-RC), and EU153100 (inaF[P106x] deletion allele)].

  • This article contains supporting information online at www.pnas.org/cgi/content/full/0708368104/DC1.

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