Bessonov Kyrylo, Vassall Kenrick A, Harauz George
Systems and Modeling Unit, Montefiore Institute, Université de Liège, Quartier Polytech 1, Allée de la Découverte 10, Liège, 4000, Belgium.
Department of Molecular and Cellular Biology, Biophysics Interdepartmental Group, and Collaborative Program in Neuroscience, University of Guelph, 50 Stone Road East, Guelph, Ontario, N1G 2W1, Canada.
Proteins. 2017 Jul;85(7):1336-1350. doi: 10.1002/prot.25295. Epub 2017 May 10.
The molecular details of the association between the human Fyn-SH3 domain, and the fragment of 18.5-kDa myelin basic protein (MBP) spanning residues S38-S107 (denoted as xα2-peptide, murine sequence numbering), were studied in silico via docking and molecular dynamics over 50-ns trajectories. The results show that interaction between the two proteins is energetically favorable and heavily dependent on the MBP proline-rich region (P93-P98) in both aqueous and membrane environments. In aqueous conditions, the xα2-peptide/Fyn-SH3 complex adopts a "sandwich""-like structure. In the membrane context, the xα2-peptide interacts with the Fyn-SH3 domain via the proline-rich region and the β-sheets of Fyn-SH3, with the latter wrapping around the proline-rich region in a form of a clip. Moreover, the simulations corroborate prior experimental evidence of the importance of upstream segments beyond the canonical SH3-ligand. This study thus provides a more-detailed glimpse into the context-dependent interaction dynamics and importance of the β-sheets in Fyn-SH3 and proline-rich region of MBP. Proteins 2017; 85:1336-1350. © 2017 Wiley Periodicals, Inc.
通过对接和超过50纳秒轨迹的分子动力学模拟,在计算机上研究了人类Fyn-SH3结构域与18.5 kDa髓鞘碱性蛋白(MBP)跨越S38-S107残基的片段(表示为xα2-肽,小鼠序列编号)之间相互作用的分子细节。结果表明,在水性和膜环境中,两种蛋白质之间的相互作用在能量上是有利的,并且严重依赖于MBP富含脯氨酸的区域(P93-P98)。在水性条件下,xα2-肽/Fyn-SH3复合物采用“三明治”样结构。在膜环境中,xα2-肽通过富含脯氨酸的区域和Fyn-SH3的β-折叠与Fyn-SH3结构域相互作用,后者以夹子的形式包裹在富含脯氨酸的区域周围。此外,模拟证实了先前关于经典SH3配体以外上游片段重要性的实验证据。因此,本研究更详细地揭示了Fyn-SH3中β-折叠和MBP富含脯氨酸区域的上下文依赖性相互作用动力学及其重要性。《蛋白质》2017年;85:1336 - 1350。©2017威利期刊公司。