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Non-syndromic Mitral Valve Dysplasia Mutation Changes the Force Resilience and Interaction of Human Filamin A.

Structure. 2019-01; 
HaatajaTatu J K,BernardiRafael C,LecointeSimon,CapouladeRomain,MerotJean,Pentik?inen
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Peptide Synthesis the GPIba-peptide (599LRGSLPTFRSSLFLWVRPNGRV622, UNIPROT ID P07359) synthetized by GenScript. Get A Quote

摘要

Filamin A (FLNa), expressed in endocardial endothelia during fetal valve morphogenesis, is key in cardiac development. Missense mutations in FLNa cause non-syndromic mitral valve dysplasia (FLNA-MVD). Here, we aimed to reveal the currently unknown underlying molecular mechanism behind FLNA-MVD caused by the FLNa P637Q mutation. The solved crystal structure of the FLNa3-5 P637Q revealed that this mutation causes only minor structural changes close to mutation site. These changes were observed to significantly affect FLNa's ability to transmit cellular force and to interact with its binding partner. The performed steered molecular dynamics simulations showed that significantly lower forces are needed to spl... More

关键词

FLNA-MVD,Filamin A,X-ray crystallography,mechanical forces,mitral valve prolapse,protein tyrosine phosphatase 12,steered molecular dynamics simulat