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Structural Basis of Smoothened Activation in Hedgehog Signaling. | LitMetric

AI Article Synopsis

  • Smoothened is a key protein in Hedgehog signaling, crucial for development and cancer, and is activated by cholesterol binding to its cysteine-rich domain.
  • The interaction causes significant changes in the protein's structure, revealing a unique inhibitory mechanism that, when disrupted, leads to its activation and oncogenic mutations.
  • The study provides insights into how Smoothened activation affects cholesterol movement and describes how different antagonists, including cyclopamine, interfere with its function.

Article Abstract

The seven-transmembrane-spanning protein Smoothened is the central transducer in Hedgehog signaling, a pathway fundamental in development and in cancer. Smoothened is activated by cholesterol binding to its extracellular cysteine-rich domain (CRD). How this interaction leads to changes in the transmembrane domain and Smoothened activation is unknown. Here, we report crystal structures of sterol-activated Smoothened. The CRD undergoes a dramatic reorientation, allosterically causing the transmembrane domain to adopt a conformation similar to active G-protein-coupled receptors. We show that Smoothened contains a unique inhibitory π-cation lock, which is broken on activation and is disrupted in constitutively active oncogenic mutants. Smoothened activation opens a hydrophobic tunnel, suggesting a pathway for cholesterol movement from the inner membrane leaflet to the CRD. All Smoothened antagonists bind the transmembrane domain and block tunnel opening, but cyclopamine also binds the CRD, inducing the active transmembrane conformation. Together, these results define the mechanisms of Smoothened activation and inhibition.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6046275PMC
http://dx.doi.org/10.1016/j.cell.2018.04.029DOI Listing

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