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Structural basis of the atypical activation mechanism of KRAS V14I .

Authors :
Bera AK
Lu J
Wales TE
Gondi S
Gurbani D
Nelson A
Engen JR
Westover KD
Source :
The Journal of biological chemistry [J Biol Chem] 2019 Sep 20; Vol. 294 (38), pp. 13964-13972. Date of Electronic Publication: 2019 Jul 24.
Publication Year :
2019

Abstract

RAS regulation and signaling are largely accomplished by direct protein-protein interactions, making RAS protein dynamics a critical determinant of RAS function. Here, we report a crystal structure of GDP-bound KRAS <superscript>V14I</superscript> , a mutated KRAS variant associated with the developmental RASopathy disorder Noonan syndrome (NS), at 1.5-1.6 Å resolution. The structure is notable for revealing a marked extension of switch 1 away from the G-domain and nucleotide-binding site of the KRAS protein. We found that this extension is associated with a loss of the magnesium ion and a tilt in the position of the guanine base because of the additional carbon introduced by the isoleucine substitution. Hydrogen-deuterium exchange MS analysis confirmed that this conformation occurs in solution, but also disclosed a difference in kinetics when compared with KRAS <superscript>A146T</superscript> , another RAS mutant that displays a nearly identical conformation in previously reported crystal structures. This conformational change contributed to a high rate of guanine nucleotide-exchange factor (GEF)-dependent and -independent nucleotide exchange and to an increase in affinity for SOS Ras/Rac GEF 1 (SOS1), which appears to be the major mode of activation for this RAS variant. These results highlight a mechanistic connection between KRAS <superscript>A146T</superscript> and KRAS <superscript>V14I</superscript> that may have implications for the regulation of these variants and for the development of therapeutic strategies to manage KRAS variant-associated disorders.<br /> (© 2019 Bera et al.)

Details

Language :
English
ISSN :
1083-351X
Volume :
294
Issue :
38
Database :
MEDLINE
Journal :
The Journal of biological chemistry
Publication Type :
Academic Journal
Accession number :
31341022
Full Text :
https://doi.org/10.1074/jbc.RA119.009131