Literature DB >> 33947796

Structural analysis of the PTEN:P-Rex2 signaling complex reveals how cancer-associated mutations coordinate to hyperactivate Rac1.

Laura D'Andrea1, Christina M Lucato1, Elsa A Marquez1, Yong-Gang Chang1, Srgjan Civciristov2, Chantel Mastos2, Christopher J Lupton1, Cheng Huang1,3, Hans Elmlund1, Ralf B Schittenhelm1,3, Christina A Mitchell1, James C Whisstock1,4, Michelle L Halls5, Andrew M Ellisdon6.   

Abstract

The dual-specificity phosphatase PTEN functions as a tumor suppressor by hydrolyzing PI(3,4,5)P3 to PI(4,5)P2 to inhibit PI3K-AKT signaling and cellular proliferation. P-Rex2 is a guanine nucleotide exchange factor for Rho GTPases and can be activated by Gβγ subunits downstream of G protein-coupled receptor signaling and by PI(3,4,5)P3 downstream of receptor tyrosine kinases. The PTEN:P-Rex2 complex is a commonly mutated signaling node in metastatic cancer. Assembly of the PTEN:P-Rex2 complex inhibits the activity of both proteins, and its dysregulation can drive PI3K-AKT signaling and cellular proliferation. Here, using cross-linking mass spectrometry and functional studies, we gained mechanistic insights into PTEN:P-Rex2 complex assembly and coinhibition. We found that PTEN was anchored to P-Rex2 by interactions between the PDZ-interacting motif in the PTEN C-terminal tail and the second PDZ domain of P-Rex2. This interaction bridged PTEN across the P-Rex2 surface, preventing PI(3,4,5)P3 hydrolysis. Conversely, PTEN both allosterically promoted an autoinhibited conformation of P-Rex2 and blocked its binding to Gβγ. In addition, we observed that the PTEN-deactivating mutations and P-Rex2 truncations combined to drive Rac1 activation to a greater extent than did either single variant alone. These insights enabled us to propose a class of gain-of-function, cancer-associated mutations within the PTEN:P-Rex2 interface that uncouple PTEN from the inhibition of Rac1 signaling.
Copyright © 2021 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works.

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Year:  2021        PMID: 33947796     DOI: 10.1126/scisignal.abc4078

Source DB:  PubMed          Journal:  Sci Signal        ISSN: 1945-0877            Impact factor:   8.192


  3 in total

1.  Major vault protein attenuates cardiomyocyte injury in doxorubicin-induced cardiomyopathy through activating AKT.

Authors:  Yu Qi; Jianzhou Chen; Junfeng Duan; Lina Kang; Kun Wang; Ziwei Chen; Biao Xu; Rong Gu
Journal:  BMC Cardiovasc Disord       Date:  2022-03-04       Impact factor: 2.298

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

Authors:  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
Journal:  Nat Struct Mol Biol       Date:  2022-07-21       Impact factor: 18.361

3.  ARNO is recruited by the neuronal adaptor FE65 to potentiate ARF6-mediated neurite outgrowth.

Authors:  Yuqi Zhai; Wai Wa Ray Chan; Wen Li; Kwok-Fai Lau
Journal:  Open Biol       Date:  2022-09-28       Impact factor: 7.124

  3 in total

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