Structure of the metastatic factor P-Rex1 reveals a two-layered autoinhibitory mechanism

转移因子 P-Rex1 的结构揭示了一种双层自抑制机制

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作者:Yong-Gang Chang #, Christopher J Lupton #, Charles Bayly-Jones #, Alastair C Keen, Laura D'Andrea, Christina M Lucato, Joel R Steele, Hari Venugopal, Ralf B Schittenhelm, James C Whisstock, Michelle L Halls, Andrew M Ellisdon

Abstract

P-Rex (PI(3,4,5)P3-dependent Rac exchanger) guanine nucleotide exchange factors potently activate Rho GTPases. P-Rex guanine nucleotide exchange factors are autoinhibited, synergistically activated by Gβγ and PI(3,4,5)P3 binding and dysregulated in cancer. Here, we use X-ray crystallography, cryogenic electron microscopy and crosslinking mass spectrometry to determine the structural basis of human P-Rex1 autoinhibition. P-Rex1 has a bipartite structure of N- and C-terminal modules connected by a C-terminal four-helix bundle that binds the N-terminal Pleckstrin homology (PH) domain. In the N-terminal module, the Dbl homology (DH) domain catalytic surface is occluded by the compact arrangement of the DH-PH-DEP1 domains. Structural analysis reveals a remarkable conformational transition to release autoinhibition, requiring a 126° opening of the DH domain hinge helix. The off-axis position of Gβγ and PI(3,4,5)P3 binding sites further suggests a counter-rotation of the P-Rex1 halves by 90° facilitates PH domain uncoupling from the four-helix bundle, releasing the autoinhibited DH domain to drive Rho GTPase signaling.

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