Allosteric communication across the native and mutated KIT receptor tyrosine kinase.

A fundamental goal in cellular signaling is to understand allosteric communication, the process by which signals originated at one site in a protein propagate dependably to affect remote functional sites. Here, we describe the allosteric regulation of the receptor tyrosine kinase KIT. Our analysis e...

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Main Authors: Elodie Laine, Christian Auclair, Luba Tchertanov
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS Computational Biology
Online Access:http://europepmc.org/articles/PMC3426562?pdf=render
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spelling doaj-8561f70316f74fe48701f91e51654a432020-11-25T01:13:57ZengPublic Library of Science (PLoS)PLoS Computational Biology1553-734X1553-73582012-01-0188e100266110.1371/journal.pcbi.1002661Allosteric communication across the native and mutated KIT receptor tyrosine kinase.Elodie LaineChristian AuclairLuba TchertanovA fundamental goal in cellular signaling is to understand allosteric communication, the process by which signals originated at one site in a protein propagate dependably to affect remote functional sites. Here, we describe the allosteric regulation of the receptor tyrosine kinase KIT. Our analysis evidenced that communication routes established between the activation loop (A-loop) and the distant juxtamembrane region (JMR) in the native protein were disrupted by the oncogenic mutation D816V positioned in the A-loop. In silico mutagenesis provided a plausible way of restoring the protein communication detected in the native KIT by introducing a counter-balancing second mutation D792E. The communication patterns observed in the native and mutated KIT correlate perfectly with the structural and dynamical features of these proteins. Particularly, a long-distance effect of the D816V mutation manifested as an important structural re-organization of the JMR in the oncogenic mutant was completely vanished in the double mutant D816V/D792E. This detailed characterization of the allosteric communication in the different forms of KIT, native and mutants, was performed by using a modular network representation composed of communication pathways and independent dynamic segments. Such representation permits to enrich a purely mechanistic interaction-based model of protein communication by the introduction of concerted local atomic fluctuations. This method, validated on KIT receptor, may guide a rational modulation of the physiopathological activities of other receptor tyrosine kinases.http://europepmc.org/articles/PMC3426562?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Elodie Laine
Christian Auclair
Luba Tchertanov
spellingShingle Elodie Laine
Christian Auclair
Luba Tchertanov
Allosteric communication across the native and mutated KIT receptor tyrosine kinase.
PLoS Computational Biology
author_facet Elodie Laine
Christian Auclair
Luba Tchertanov
author_sort Elodie Laine
title Allosteric communication across the native and mutated KIT receptor tyrosine kinase.
title_short Allosteric communication across the native and mutated KIT receptor tyrosine kinase.
title_full Allosteric communication across the native and mutated KIT receptor tyrosine kinase.
title_fullStr Allosteric communication across the native and mutated KIT receptor tyrosine kinase.
title_full_unstemmed Allosteric communication across the native and mutated KIT receptor tyrosine kinase.
title_sort allosteric communication across the native and mutated kit receptor tyrosine kinase.
publisher Public Library of Science (PLoS)
series PLoS Computational Biology
issn 1553-734X
1553-7358
publishDate 2012-01-01
description A fundamental goal in cellular signaling is to understand allosteric communication, the process by which signals originated at one site in a protein propagate dependably to affect remote functional sites. Here, we describe the allosteric regulation of the receptor tyrosine kinase KIT. Our analysis evidenced that communication routes established between the activation loop (A-loop) and the distant juxtamembrane region (JMR) in the native protein were disrupted by the oncogenic mutation D816V positioned in the A-loop. In silico mutagenesis provided a plausible way of restoring the protein communication detected in the native KIT by introducing a counter-balancing second mutation D792E. The communication patterns observed in the native and mutated KIT correlate perfectly with the structural and dynamical features of these proteins. Particularly, a long-distance effect of the D816V mutation manifested as an important structural re-organization of the JMR in the oncogenic mutant was completely vanished in the double mutant D816V/D792E. This detailed characterization of the allosteric communication in the different forms of KIT, native and mutants, was performed by using a modular network representation composed of communication pathways and independent dynamic segments. Such representation permits to enrich a purely mechanistic interaction-based model of protein communication by the introduction of concerted local atomic fluctuations. This method, validated on KIT receptor, may guide a rational modulation of the physiopathological activities of other receptor tyrosine kinases.
url http://europepmc.org/articles/PMC3426562?pdf=render
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AT lubatchertanov allostericcommunicationacrossthenativeandmutatedkitreceptortyrosinekinase
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