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Exploring the dynamic mechanism of allosteric drug SHP099 inhibiting SHP2E69K.

Authors :
Du, Shan
Lu, Xin-hua
Li, Wei-Ya
Li, Li-Peng
Ma, Yang-Chun
Zhou, Liang
Wu, Jing-Wei
Ma, Ying
Wang, Run-Ling
Source :
Molecular Diversity; Aug2021, Vol. 25 Issue 3, p1873-1887, 15p
Publication Year :
2021

Abstract

The E69K mutation is one of the most frequent protein tyrosine phosphatase-2 (SHP2) mutations in leukemia, and it can cause the increase in the protein activity. Recent studies have shown that the E69K mutation was fairly sensitive to the allosteric inhibitor of SHP2 (SHP099). However, the molecular mechanism of the allosteric drug SHP099 inhibiting SHP2<superscript>E69K</superscript> remains unclear. Thus, the molecular dynamic simulations and the post-dynamics analyses (RMSF, PCA, DCCM, RIN and the binding free energies) for SHP2<superscript>WT</superscript>, SHP2<superscript>WT</superscript>-SHP099, SHP2<superscript>E69K</superscript> and SHP2<superscript>E69K</superscript>-SHP099 were carried out, respectively. Owing to the strong binding affinity of SHP099 to residues Thr219 and Arg220, the flexibility of linker region (residues Val209-Arg231) was reduced. Moreover, the presence of SHP099 kept the autoinhibition state of the SHP2 protein through enhancing the interactions between the linker region and Q loop in PTP domain, such as Thr219/Val490, Thr219/Asn491, Arg220/Ile488 and Leu254/Asn491. In addition, it was found that the residues (Thr219, Arg220, Leu254 and Asn491) might be the key residues responsible for the conformational changes of protein. Overall, this study may provide an important basis for understanding how the SHP099 effectively inhibited the SHP2<superscript>E69K</superscript> activity at the molecular level. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13811991
Volume :
25
Issue :
3
Database :
Complementary Index
Journal :
Molecular Diversity
Publication Type :
Academic Journal
Accession number :
151760580
Full Text :
https://doi.org/10.1007/s11030-020-10179-y