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涉及瑞士和法国患者报道的不同β-发夹突变的分子动力学模拟与他们的疾病表型相关。

Molecular dynamics simulations involving different β-propeller mutations reported in Swiss and French patients correlate with their disease phenotypes.

机构信息

Gene Therapy Laboratory, Department of Integrative Biology, School of Bio Sciences and Technology, Vellore Institute of Technology, Vellore, 632 014, India.

出版信息

Sci Rep. 2024 Oct 15;14(1):24133. doi: 10.1038/s41598-024-75070-4.

Abstract

Integrin αIIbβ3 is the predominant receptor for fibrinogen which mediates platelet aggregation, an important step in hemostasis and thrombosis. Several mutations have been reported in the genes encoding αIIb and β3 subunits among patients with Glanzmann thrombasthenia, of which 177 are in the β-propeller domain. The two subunits form a heterodimer at the interface between β-propeller and β-I domains of αIIb and β3, respectively with their stability critical for intracellular trafficking, surface expression, and ligand binding. Our study was aimed at retrieving the β-propeller mutations from various databases and studying structural variations due to select mutations upon interaction with fibrinogen using molecular docking and molecular dynamics. Mutations were studied for their impact on phenotypic severity, structural stability, and evolutionary conservation. Molecular docking analysis and molecular dynamics simulations were carried out for αIIb-β3 complexes as well as αIIbβ3-fibrinogen complexes; in particular, E355K structure had more deviations, fluctuations, and other changes which compromised its structural stability and binding affinity when compared to both wild-type and G401C structures. Our comprehensive in silico analysis clearly reiterates that mutations in the β-propeller are not only responsible for structural changes in this domain but also have implications on the overall structure and function of integrin αIIbβ3.

摘要

整合素 αIIbβ3 是纤维蛋白原的主要受体,它介导血小板聚集,这是止血和血栓形成的重要步骤。在 Glanzmann 血小板无力症患者的编码 αIIb 和 β3 亚基的基因中已经报道了几种突变,其中 177 个位于 β-螺旋桨结构域。这两个亚基在 αIIb 和 β3 的β-螺旋桨和β-I 结构域之间的界面形成异二聚体,其稳定性对于细胞内运输、表面表达和配体结合至关重要。我们的研究旨在从各种数据库中检索β-螺旋桨突变,并使用分子对接和分子动力学研究与纤维蛋白原相互作用时由于选择突变引起的结构变化。研究了突变对表型严重程度、结构稳定性和进化保守性的影响。对αIIb-β3 复合物以及 αIIbβ3-纤维蛋白原复合物进行了分子对接分析和分子动力学模拟;特别是,E355K 结构与野生型和 G401C 结构相比,具有更多的偏差、波动和其他变化,这损害了其结构稳定性和结合亲和力。我们的综合计算机分析清楚地再次表明,β-螺旋桨中的突变不仅导致该结构域的结构变化,而且对整合素 αIIbβ3 的整体结构和功能也有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5678/11480402/276357681dd0/41598_2024_75070_Fig1_HTML.jpg

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