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SHOC2 complex-driven RAF dimerization selectively contributes to ERK pathway dynamics

Despite the crucial role of RAF kinases in cell signaling and disease, we still lack a complete understanding of their regulation. Heterodimerization of RAF kinases as well as dephosphorylation of a conserved “S259” inhibitory site are important steps for RAF activation but the precise mechanisms an...

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Autores principales: Boned del Río, Isabel, Young, Lucy C., Sari, Sibel, Jones, Greg G., Ringham-Terry, Benjamin, Hartig, Nicole, Rejnowicz, Ewa, Lei, Winnie, Bhamra, Amandeep, Surinova, Silvia, Rodriguez-Viciana, Pablo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6613145/
https://www.ncbi.nlm.nih.gov/pubmed/31213532
http://dx.doi.org/10.1073/pnas.1902658116
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author Boned del Río, Isabel
Young, Lucy C.
Sari, Sibel
Jones, Greg G.
Ringham-Terry, Benjamin
Hartig, Nicole
Rejnowicz, Ewa
Lei, Winnie
Bhamra, Amandeep
Surinova, Silvia
Rodriguez-Viciana, Pablo
author_facet Boned del Río, Isabel
Young, Lucy C.
Sari, Sibel
Jones, Greg G.
Ringham-Terry, Benjamin
Hartig, Nicole
Rejnowicz, Ewa
Lei, Winnie
Bhamra, Amandeep
Surinova, Silvia
Rodriguez-Viciana, Pablo
author_sort Boned del Río, Isabel
collection PubMed
description Despite the crucial role of RAF kinases in cell signaling and disease, we still lack a complete understanding of their regulation. Heterodimerization of RAF kinases as well as dephosphorylation of a conserved “S259” inhibitory site are important steps for RAF activation but the precise mechanisms and dynamics remain unclear. A ternary complex comprised of SHOC2, MRAS, and PP1 (SHOC2 complex) functions as a RAF S259 holophosphatase and gain-of-function mutations in SHOC2, MRAS, and PP1 that promote complex formation are found in Noonan syndrome. Here we show that SHOC2 complex-mediated S259 RAF dephosphorylation is critically required for growth factor-induced RAF heterodimerization as well as for MEK dissociation from BRAF. We also uncover SHOC2-independent mechanisms of RAF and ERK pathway activation that rely on N-region phosphorylation of CRAF. In DLD-1 cells stimulated with EGF, SHOC2 function is essential for a rapid transient phase of ERK activation, but is not required for a slow, sustained phase that is instead driven by palmitoylated H/N-RAS proteins and CRAF. Whereas redundant SHOC2-dependent and -independent mechanisms of RAF and ERK activation make SHOC2 dispensable for proliferation in 2D, KRAS mutant cells preferentially rely on SHOC2 for ERK signaling under anchorage-independent conditions. Our study highlights a context-dependent contribution of SHOC2 to ERK pathway dynamics that is preferentially engaged by KRAS oncogenic signaling and provides a biochemical framework for selective ERK pathway inhibition by targeting the SHOC2 holophosphatase.
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spelling pubmed-66131452019-07-15 SHOC2 complex-driven RAF dimerization selectively contributes to ERK pathway dynamics Boned del Río, Isabel Young, Lucy C. Sari, Sibel Jones, Greg G. Ringham-Terry, Benjamin Hartig, Nicole Rejnowicz, Ewa Lei, Winnie Bhamra, Amandeep Surinova, Silvia Rodriguez-Viciana, Pablo Proc Natl Acad Sci U S A PNAS Plus Despite the crucial role of RAF kinases in cell signaling and disease, we still lack a complete understanding of their regulation. Heterodimerization of RAF kinases as well as dephosphorylation of a conserved “S259” inhibitory site are important steps for RAF activation but the precise mechanisms and dynamics remain unclear. A ternary complex comprised of SHOC2, MRAS, and PP1 (SHOC2 complex) functions as a RAF S259 holophosphatase and gain-of-function mutations in SHOC2, MRAS, and PP1 that promote complex formation are found in Noonan syndrome. Here we show that SHOC2 complex-mediated S259 RAF dephosphorylation is critically required for growth factor-induced RAF heterodimerization as well as for MEK dissociation from BRAF. We also uncover SHOC2-independent mechanisms of RAF and ERK pathway activation that rely on N-region phosphorylation of CRAF. In DLD-1 cells stimulated with EGF, SHOC2 function is essential for a rapid transient phase of ERK activation, but is not required for a slow, sustained phase that is instead driven by palmitoylated H/N-RAS proteins and CRAF. Whereas redundant SHOC2-dependent and -independent mechanisms of RAF and ERK activation make SHOC2 dispensable for proliferation in 2D, KRAS mutant cells preferentially rely on SHOC2 for ERK signaling under anchorage-independent conditions. Our study highlights a context-dependent contribution of SHOC2 to ERK pathway dynamics that is preferentially engaged by KRAS oncogenic signaling and provides a biochemical framework for selective ERK pathway inhibition by targeting the SHOC2 holophosphatase. National Academy of Sciences 2019-07-02 2019-06-18 /pmc/articles/PMC6613145/ /pubmed/31213532 http://dx.doi.org/10.1073/pnas.1902658116 Text en Copyright © 2019 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle PNAS Plus
Boned del Río, Isabel
Young, Lucy C.
Sari, Sibel
Jones, Greg G.
Ringham-Terry, Benjamin
Hartig, Nicole
Rejnowicz, Ewa
Lei, Winnie
Bhamra, Amandeep
Surinova, Silvia
Rodriguez-Viciana, Pablo
SHOC2 complex-driven RAF dimerization selectively contributes to ERK pathway dynamics
title SHOC2 complex-driven RAF dimerization selectively contributes to ERK pathway dynamics
title_full SHOC2 complex-driven RAF dimerization selectively contributes to ERK pathway dynamics
title_fullStr SHOC2 complex-driven RAF dimerization selectively contributes to ERK pathway dynamics
title_full_unstemmed SHOC2 complex-driven RAF dimerization selectively contributes to ERK pathway dynamics
title_short SHOC2 complex-driven RAF dimerization selectively contributes to ERK pathway dynamics
title_sort shoc2 complex-driven raf dimerization selectively contributes to erk pathway dynamics
topic PNAS Plus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6613145/
https://www.ncbi.nlm.nih.gov/pubmed/31213532
http://dx.doi.org/10.1073/pnas.1902658116
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