4.8 Article

Structures of human Patched and its complex with native palmitoylated sonic hedgehog

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NATURE
卷 560, 期 7716, 页码 128-+

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41586-018-0308-7

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资金

  1. CPRIT Core Facility [RP170644]
  2. Endowed Scholars Program in Medical Science of UT Southwestern Medical Center
  3. O'Donnell Junior Faculty Funds
  4. NIH [P01 HL020948]
  5. Rockefeller University
  6. National Key Research and Development Program of MOST [2016YFA0501103, 2015CB910104]

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Hedgehog (HH) signalling governs embryogenesis and adult tissue homeostasis in mammals and other multicellular organisms(1-3). Whereas deficient HH signalling leads to birth defects, unrestrained HH signalling is implicated in human cancers(2,4-6) N-terminally palmitoylated HH releases the repression of Patched to the oncoprotein smoothened (SMO); however, the mechanism by which HH recognizes Patched is unclear. Here we report cryoelectron microscopy structures of human patched 1 (PTCH1) alone and in complex with the N-terminal domain of 'native' sonic hedgehog (native SHH-N has both a C-terminal cholesterol and an N-terminal fatty-acid modification), at resolutions of 3.5 angstrom and 3.8 angstrom, respectively. The structure of PTCH1 has internal two-fold pseudosymmetry in the transmembrane core, which features a sterol-sensing domain and two homologous extracellular domains, resembling the architecture of Niemann-Pick Cl (NPC1) protein(7). The palmitoylated N terminus of SHH-N inserts into a cavity between the extracellular domains of PTCH1 and dominates the PTCH1-SHH-N interface, which is distinct from that reported for SHH-N co-receptors(8). Our biochemical assays show that SHH-N may use another interface, one that is required for its coreceptor binding, to recruit PTCH1 in the absence of a covalently attached palmitate. Our work provides atomic insights into the recognition of the N-terminal domain of HH (HH-N) by PTCH1, offers a structural basis for cooperative binding of HH-N to various receptors and serves as a molecular framework for HH signalling and its malfunction in disease.

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