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The GTPase-activating protein p120RasGAP has an evolutionarily conserved "FLVR-unique" SH2 domain

J Biol Chem. 2020-07; 
Rachel Jaber Chehayeb, Jessica Wang, Amy L Stiegler, Titus J Boggon
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Peptide Synthesis A synthetic 7-amino acid peptide of sequence 1086DpYAEPMD1092 native to p190RhoGAP residues 1086–1092 (UniProtQ9NRY4) phosphorylated at Tyr1087 and a 15-amino acid peptide with sequence 1081GFDPSDpYAEPMDAVV1095 corresponding to residues 1081–1095 of p190RhoGAP (UniProtQ9NRY4) with N-terminal acetylation and C-terminal amidation were commercially synthesized (GenScript) and resuspended in sterile-filtered water. Get A Quote

Abstract

The Src homology 2 (SH2) domain has a highly conserved architecture that recognizes linear phosphotyrosine motifs and is present in a wide range of signaling pathways across different evolutionary taxa. A hallmark of SH2 domains is the arginine residue in the conserved FLVR motif that forms a direct salt bridge with bound phosphotyrosine. Here, we solve the X-ray crystal structures of the C-terminal SH2 domain of p120RasGAP (RASA1) in its apo and peptide-bound form. We find that the arginine residue in the FLVR motif does not directly contact pTyr1087 of a bound phosphopeptide derived from p190RhoGAP; rather, it makes an intramolecular salt bridge to an aspartic acid. Unexpectedly, coordination of phosphotyrosi... More

Keywords

FLVR motif; GTPase-activating protein (GAP); RASA1; RasGAP; Src homology 2 domain (SH2 domain); X-ray crystallography; p120RasGAP; phosphotyrosine; protein structure; protein–protein interaction.