4.8 Article

A CD36 ectodomain mediates insect pheromone detection via a putative tunnelling mechanism

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NATURE COMMUNICATIONS
卷 7, 期 -, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/ncomms11866

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资金

  1. Post-doctoral FICYT-PCTI Clarin Programme from the Government of the Principado de Asturias
  2. National Science and Engineering Research Council of Canada (NSERC)
  3. Canadian Institutes of Health Research
  4. Excellence Initiative of the German Federal Government [EXC 294]
  5. Excellence Initiative of the German State Government [EXC 294]
  6. University of Lausanne
  7. European Research Council [205202]
  8. Swiss National Science Foundation [31003A_124816, 31003A_140869]
  9. Swiss National Science Foundation (SNF) [31003A_124816, 31003A_140869] Funding Source: Swiss National Science Foundation (SNF)
  10. European Research Council (ERC) [205202] Funding Source: European Research Council (ERC)

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CD36 transmembrane proteins have diverse roles in lipid uptake, cell adhesion and pathogen sensing. Despite numerous in vitro studies, how they act in native cellular contexts is poorly understood. A Drosophila CD36 homologue, sensory neuron membrane protein 1 (SNMP1), was previously shown to facilitate detection of lipid-derived pheromones by their cognate receptors in olfactory cilia. Here we investigate how SNMP1 functions in vivo. Structure-activity dissection demonstrates that SNMP1's ectodomain is essential, but intracellular and transmembrane domains dispensable, for cilia localization and pheromone-evoked responses. SNMP1 can be substituted by mammalian CD36, whose ectodomain can interact with insect pheromones. Homology modelling, using the mammalian LIMP-2 structure as template, reveals a putative tunnel in the SNMP1 ectodomain that is sufficiently large to accommodate pheromone molecules. Amino-acid substitutions predicted to block this tunnel diminish pheromone sensitivity. We propose a model in which SNMP1 funnels hydrophobic pheromones from the extracellular fluid to integral membrane receptors.

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