Structures reveal a key mechanism of WAVE regulatory complex activation by Rac1 GTPase
The Rho-family GTPase Rac1 activates the WAVE regulatory complex (WRC) to drive Arp2/3 complex-mediated actin polymerization in many essential processes. Rac1 binds to WRC at two distinct sites—the A and D sites. Precisely how Rac1 binds and how the binding triggers WRC activation remain unknown. He...
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Published in | Nature communications Vol. 13; no. 1; pp. 5444 - 13 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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London
Nature Publishing Group UK
16.09.2022
Nature Publishing Group Nature Portfolio |
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Online Access | Get full text |
ISSN | 2041-1723 2041-1723 |
DOI | 10.1038/s41467-022-33174-3 |
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Abstract | The Rho-family GTPase Rac1 activates the WAVE regulatory complex (WRC) to drive Arp2/3 complex-mediated actin polymerization in many essential processes. Rac1 binds to WRC at two distinct sites—the A and D sites. Precisely how Rac1 binds and how the binding triggers WRC activation remain unknown. Here we report WRC structures by itself, and when bound to single or double Rac1 molecules, at ~3 Å resolutions by cryogenic-electron microscopy. The structures reveal that Rac1 binds to the two sites by distinct mechanisms, and binding to the A site, but not the D site, drives WRC activation. Activation involves a series of unique conformational changes leading to the release of sequestered WCA (WH2-central-acidic) polypeptide, which stimulates the Arp2/3 complex to polymerize actin. Together with biochemical and cellular analyses, the structures provide a novel mechanistic understanding of how the Rac1-WRC-Arp2/3-actin signaling axis is regulated in diverse biological processes and diseases.
Rho-family GTPase Rac1 activates the WAVE complex (WRC) to promote Arp2/3-mediated actin assembly in various processes. Here, the authors determined cryo-EM structures of WRC bound to Rac1 in different states, revealing how Rac1 binding activates WRC. |
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AbstractList | The Rho-family GTPase Rac1 activates the WAVE regulatory complex (WRC) to drive Arp2/3 complex-mediated actin polymerization in many essential processes. Rac1 binds to WRC at two distinct sites—the A and D sites. Precisely how Rac1 binds and how the binding triggers WRC activation remain unknown. Here we report WRC structures by itself, and when bound to single or double Rac1 molecules, at ~3 Å resolutions by cryogenic-electron microscopy. The structures reveal that Rac1 binds to the two sites by distinct mechanisms, and binding to the A site, but not the D site, drives WRC activation. Activation involves a series of unique conformational changes leading to the release of sequestered WCA (WH2-central-acidic) polypeptide, which stimulates the Arp2/3 complex to polymerize actin. Together with biochemical and cellular analyses, the structures provide a novel mechanistic understanding of how the Rac1-WRC-Arp2/3-actin signaling axis is regulated in diverse biological processes and diseases.Rho-family GTPase Rac1 activates the WAVE complex (WRC) to promote Arp2/3-mediated actin assembly in various processes. Here, the authors determined cryo-EM structures of WRC bound to Rac1 in different states, revealing how Rac1 binding activates WRC. The Rho-family GTPase Rac1 activates the WAVE regulatory complex (WRC) to drive Arp2/3 complex-mediated actin polymerization in many essential processes. Rac1 binds to WRC at two distinct sites—the A and D sites. Precisely how Rac1 binds and how the binding triggers WRC activation remain unknown. Here we report WRC structures by itself, and when bound to single or double Rac1 molecules, at ~3 Å resolutions by cryogenic-electron microscopy. The structures reveal that Rac1 binds to the two sites by distinct mechanisms, and binding to the A site, but not the D site, drives WRC activation. Activation involves a series of unique conformational changes leading to the release of sequestered WCA (WH2-central-acidic) polypeptide, which stimulates the Arp2/3 complex to polymerize actin. Together with biochemical and cellular analyses, the structures provide a novel mechanistic understanding of how the Rac1-WRC-Arp2/3-actin signaling axis is regulated in diverse biological processes and diseases. Rho-family GTPase Rac1 activates the WAVE complex (WRC) to promote Arp2/3-mediated actin assembly in various processes. Here, the authors determined cryo-EM structures of WRC bound to Rac1 in different states, revealing how Rac1 binding activates WRC. The Rho-family GTPase Rac1 activates the WAVE regulatory complex (WRC) to drive Arp2/3 complex-mediated actin polymerization in many essential processes. Rac1 binds to WRC at two distinct sites—the A and D sites. Precisely how Rac1 binds and how the binding triggers WRC activation remain unknown. Here we report WRC structures by itself, and when bound to single or double Rac1 molecules, at ~3 Å resolutions by cryogenic-electron microscopy. The structures reveal that Rac1 binds to the two sites by distinct mechanisms, and binding to the A site, but not the D site, drives WRC activation. Activation involves a series of unique conformational changes leading to the release of sequestered WCA (WH2-central-acidic) polypeptide, which stimulates the Arp2/3 complex to polymerize actin. Together with biochemical and cellular analyses, the structures provide a novel mechanistic understanding of how the Rac1-WRC-Arp2/3-actin signaling axis is regulated in diverse biological processes and diseases. Rho-family GTPase Rac1 activates the WAVE complex (WRC) to promote Arp2/3-mediated actin assembly in various processes. Here, the authors determined cryo-EM structures of WRC bound to Rac1 in different states, revealing how Rac1 binding activates WRC. The Rho-family GTPase Rac1 activates the WAVE regulatory complex (WRC) to drive Arp2/3 complex-mediated actin polymerization in many essential processes. Rac1 binds to WRC at two distinct sites-the A and D sites. Precisely how Rac1 binds and how the binding triggers WRC activation remain unknown. Here we report WRC structures by itself, and when bound to single or double Rac1 molecules, at ~3 Å resolutions by cryogenic-electron microscopy. The structures reveal that Rac1 binds to the two sites by distinct mechanisms, and binding to the A site, but not the D site, drives WRC activation. Activation involves a series of unique conformational changes leading to the release of sequestered WCA (WH2-central-acidic) polypeptide, which stimulates the Arp2/3 complex to polymerize actin. Together with biochemical and cellular analyses, the structures provide a novel mechanistic understanding of how the Rac1-WRC-Arp2/3-actin signaling axis is regulated in diverse biological processes and diseases.The Rho-family GTPase Rac1 activates the WAVE regulatory complex (WRC) to drive Arp2/3 complex-mediated actin polymerization in many essential processes. Rac1 binds to WRC at two distinct sites-the A and D sites. Precisely how Rac1 binds and how the binding triggers WRC activation remain unknown. Here we report WRC structures by itself, and when bound to single or double Rac1 molecules, at ~3 Å resolutions by cryogenic-electron microscopy. The structures reveal that Rac1 binds to the two sites by distinct mechanisms, and binding to the A site, but not the D site, drives WRC activation. Activation involves a series of unique conformational changes leading to the release of sequestered WCA (WH2-central-acidic) polypeptide, which stimulates the Arp2/3 complex to polymerize actin. Together with biochemical and cellular analyses, the structures provide a novel mechanistic understanding of how the Rac1-WRC-Arp2/3-actin signaling axis is regulated in diverse biological processes and diseases. |
ArticleNumber | 5444 |
Author | Yang, Sheng Chen, Baoyu Brown, Abbigale J. Ding, Bojian Schaks, Matthias Chowdhury, Saikat Rottner, Klemens Liu, Yijun |
Author_xml | – sequence: 1 givenname: Bojian orcidid: 0000-0002-6648-3477 surname: Ding fullname: Ding, Bojian organization: Department of Biochemistry and Cell Biology, Stony Brook University – sequence: 2 givenname: Sheng surname: Yang fullname: Yang, Sheng organization: Roy J. Carver Department of Biochemistry, Biophysics & Molecular Biology, Iowa State University, Target & Protein Sciences, Janssen R&D, Johnson & Johnson – sequence: 3 givenname: Matthias surname: Schaks fullname: Schaks, Matthias organization: Division of Molecular Cell Biology, Zoological Institute, Technische Universität Braunschweig, Department of Cell Biology, Helmholtz Centre for Infection Research, Soilytix GmbH, Dammtorwall 7 A – sequence: 4 givenname: Yijun surname: Liu fullname: Liu, Yijun organization: Roy J. Carver Department of Biochemistry, Biophysics & Molecular Biology, Iowa State University – sequence: 5 givenname: Abbigale J. surname: Brown fullname: Brown, Abbigale J. organization: Roy J. Carver Department of Biochemistry, Biophysics & Molecular Biology, Iowa State University – sequence: 6 givenname: Klemens orcidid: 0000-0003-4244-4198 surname: Rottner fullname: Rottner, Klemens organization: Division of Molecular Cell Biology, Zoological Institute, Technische Universität Braunschweig, Department of Cell Biology, Helmholtz Centre for Infection Research, Braunschweig Integrated Centre of Systems Biology (BRICS) – sequence: 7 givenname: Saikat orcidid: 0000-0001-8043-5028 surname: Chowdhury fullname: Chowdhury, Saikat email: saikat@csirccmb.org organization: Department of Biochemistry and Cell Biology, Stony Brook University, CSIR-Centre for Cellular and Molecular Biology, Academy of Scientific and Innovative Research (AcSIR) – sequence: 8 givenname: Baoyu orcidid: 0000-0002-6366-159X surname: Chen fullname: Chen, Baoyu email: stone@iastate.edu organization: Roy J. Carver Department of Biochemistry, Biophysics & Molecular Biology, Iowa State University |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/36114192$$D View this record in MEDLINE/PubMed |
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Snippet | The Rho-family GTPase Rac1 activates the WAVE regulatory complex (WRC) to drive Arp2/3 complex-mediated actin polymerization in many essential processes. Rac1... The Rho-family GTPase Rac1 activates the WAVE regulatory complex (WRC) to drive Arp2/3 complex-mediated actin polymerization in many essential processes. Rac1... Rho-family GTPase Rac1 activates the WAVE complex (WRC) to promote Arp2/3-mediated actin assembly in various processes. Here, the authors determined cryo-EM... |
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SubjectTerms | 101/28 13/106 14/19 631/45/612/1228 631/535/1258/1259 82/16 82/83 Actin Actin-Related Protein 2-3 Complex - metabolism Actins - metabolism Binding Binding sites Biochemistry Biological activity Biology Cellular structure Cytoplasm - metabolism Electron microscopy Guanosine triphosphatases Humanities and Social Sciences Ligands Microscopy multidisciplinary Polymerization Polypeptides Proteins rac1 GTP-Binding Protein - metabolism Rac1 protein Science Science (multidisciplinary) Wiskott-Aldrich Syndrome Protein Family - metabolism |
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Title | Structures reveal a key mechanism of WAVE regulatory complex activation by Rac1 GTPase |
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