Mechanism of SOS PR-domain autoinhibition revealed by single-molecule assays on native protein from lysate

The guanine nucleotide exchange factor SOS is a critical intermediary that transduces receptor tyrosine kinase stimulation into Ras activation. Here the authors develop a single molecule assay in which SOS is captured from raw lysates using Ras-functionalized membrane microarrays and uncover an auto...

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Autores principales: Young Kwang Lee, Shalini T. Low-Nam, Jean K. Chung, Scott D. Hansen, Hiu Yue Monatrice Lam, Steven Alvarez, Jay T. Groves
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/2e94ef8418fb45d8a6f011beb41476a4
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spelling oai:doaj.org-article:2e94ef8418fb45d8a6f011beb41476a42021-12-02T17:06:21ZMechanism of SOS PR-domain autoinhibition revealed by single-molecule assays on native protein from lysate10.1038/ncomms150612041-1723https://doaj.org/article/2e94ef8418fb45d8a6f011beb41476a42017-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms15061https://doaj.org/toc/2041-1723The guanine nucleotide exchange factor SOS is a critical intermediary that transduces receptor tyrosine kinase stimulation into Ras activation. Here the authors develop a single molecule assay in which SOS is captured from raw lysates using Ras-functionalized membrane microarrays and uncover an autoinhibitory mechanism of SOS regulation.Young Kwang LeeShalini T. Low-NamJean K. ChungScott D. HansenHiu Yue Monatrice LamSteven AlvarezJay T. GrovesNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-11 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Young Kwang Lee
Shalini T. Low-Nam
Jean K. Chung
Scott D. Hansen
Hiu Yue Monatrice Lam
Steven Alvarez
Jay T. Groves
Mechanism of SOS PR-domain autoinhibition revealed by single-molecule assays on native protein from lysate
description The guanine nucleotide exchange factor SOS is a critical intermediary that transduces receptor tyrosine kinase stimulation into Ras activation. Here the authors develop a single molecule assay in which SOS is captured from raw lysates using Ras-functionalized membrane microarrays and uncover an autoinhibitory mechanism of SOS regulation.
format article
author Young Kwang Lee
Shalini T. Low-Nam
Jean K. Chung
Scott D. Hansen
Hiu Yue Monatrice Lam
Steven Alvarez
Jay T. Groves
author_facet Young Kwang Lee
Shalini T. Low-Nam
Jean K. Chung
Scott D. Hansen
Hiu Yue Monatrice Lam
Steven Alvarez
Jay T. Groves
author_sort Young Kwang Lee
title Mechanism of SOS PR-domain autoinhibition revealed by single-molecule assays on native protein from lysate
title_short Mechanism of SOS PR-domain autoinhibition revealed by single-molecule assays on native protein from lysate
title_full Mechanism of SOS PR-domain autoinhibition revealed by single-molecule assays on native protein from lysate
title_fullStr Mechanism of SOS PR-domain autoinhibition revealed by single-molecule assays on native protein from lysate
title_full_unstemmed Mechanism of SOS PR-domain autoinhibition revealed by single-molecule assays on native protein from lysate
title_sort mechanism of sos pr-domain autoinhibition revealed by single-molecule assays on native protein from lysate
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/2e94ef8418fb45d8a6f011beb41476a4
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