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Structural basis for the activation of PLC-γ isozymes by phosphorylation and cancer-associated mutations

Direct activation of the human phospholipase C-γ isozymes (PLC-γ1, -γ2) by tyrosine phosphorylation is fundamental to the control of diverse biological processes, including chemotaxis, platelet aggregation, and adaptive immunity. In turn, aberrant activation of PLC-γ1 and PLC-γ2 is implicated in inf...

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Autores principales: Hajicek, Nicole, Keith, Nicholas C, Siraliev-Perez, Edhriz, Temple, Brenda RS, Huang, Weigang, Zhang, Qisheng, Harden, T Kendall, Sondek, John
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7004563/
https://www.ncbi.nlm.nih.gov/pubmed/31889510
http://dx.doi.org/10.7554/eLife.51700
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author Hajicek, Nicole
Keith, Nicholas C
Siraliev-Perez, Edhriz
Temple, Brenda RS
Huang, Weigang
Zhang, Qisheng
Harden, T Kendall
Sondek, John
author_facet Hajicek, Nicole
Keith, Nicholas C
Siraliev-Perez, Edhriz
Temple, Brenda RS
Huang, Weigang
Zhang, Qisheng
Harden, T Kendall
Sondek, John
author_sort Hajicek, Nicole
collection PubMed
description Direct activation of the human phospholipase C-γ isozymes (PLC-γ1, -γ2) by tyrosine phosphorylation is fundamental to the control of diverse biological processes, including chemotaxis, platelet aggregation, and adaptive immunity. In turn, aberrant activation of PLC-γ1 and PLC-γ2 is implicated in inflammation, autoimmunity, and cancer. Although structures of isolated domains from PLC-γ isozymes are available, these structures are insufficient to define how release of basal autoinhibition is coupled to phosphorylation-dependent enzyme activation. Here, we describe the first high-resolution structure of a full-length PLC-γ isozyme and use it to underpin a detailed model of their membrane-dependent regulation. Notably, an interlinked set of regulatory domains integrates basal autoinhibition, tyrosine kinase engagement, and additional scaffolding functions with the phosphorylation-dependent, allosteric control of phospholipase activation. The model also explains why mutant forms of the PLC-γ isozymes found in several cancers have a wide spectrum of activities, and highlights how these activities are tuned during disease.
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spelling pubmed-70045632020-02-10 Structural basis for the activation of PLC-γ isozymes by phosphorylation and cancer-associated mutations Hajicek, Nicole Keith, Nicholas C Siraliev-Perez, Edhriz Temple, Brenda RS Huang, Weigang Zhang, Qisheng Harden, T Kendall Sondek, John eLife Biochemistry and Chemical Biology Direct activation of the human phospholipase C-γ isozymes (PLC-γ1, -γ2) by tyrosine phosphorylation is fundamental to the control of diverse biological processes, including chemotaxis, platelet aggregation, and adaptive immunity. In turn, aberrant activation of PLC-γ1 and PLC-γ2 is implicated in inflammation, autoimmunity, and cancer. Although structures of isolated domains from PLC-γ isozymes are available, these structures are insufficient to define how release of basal autoinhibition is coupled to phosphorylation-dependent enzyme activation. Here, we describe the first high-resolution structure of a full-length PLC-γ isozyme and use it to underpin a detailed model of their membrane-dependent regulation. Notably, an interlinked set of regulatory domains integrates basal autoinhibition, tyrosine kinase engagement, and additional scaffolding functions with the phosphorylation-dependent, allosteric control of phospholipase activation. The model also explains why mutant forms of the PLC-γ isozymes found in several cancers have a wide spectrum of activities, and highlights how these activities are tuned during disease. eLife Sciences Publications, Ltd 2019-12-31 /pmc/articles/PMC7004563/ /pubmed/31889510 http://dx.doi.org/10.7554/eLife.51700 Text en © 2019, Hajicek et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Biochemistry and Chemical Biology
Hajicek, Nicole
Keith, Nicholas C
Siraliev-Perez, Edhriz
Temple, Brenda RS
Huang, Weigang
Zhang, Qisheng
Harden, T Kendall
Sondek, John
Structural basis for the activation of PLC-γ isozymes by phosphorylation and cancer-associated mutations
title Structural basis for the activation of PLC-γ isozymes by phosphorylation and cancer-associated mutations
title_full Structural basis for the activation of PLC-γ isozymes by phosphorylation and cancer-associated mutations
title_fullStr Structural basis for the activation of PLC-γ isozymes by phosphorylation and cancer-associated mutations
title_full_unstemmed Structural basis for the activation of PLC-γ isozymes by phosphorylation and cancer-associated mutations
title_short Structural basis for the activation of PLC-γ isozymes by phosphorylation and cancer-associated mutations
title_sort structural basis for the activation of plc-γ isozymes by phosphorylation and cancer-associated mutations
topic Biochemistry and Chemical Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7004563/
https://www.ncbi.nlm.nih.gov/pubmed/31889510
http://dx.doi.org/10.7554/eLife.51700
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