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Molecular Dynamics Simulated Unfolding of von Willebrand Factor A Domains by Force

机译:分子动力学模拟力的作用下von Willebrand因子A域的展开。

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The three tandem A domains (Al, A2, and A3) of von Willebrand factor (VWF) play critical roles for its functions. The Al and A3 domains contain respective binding sites for platelet glycoprotein Ib (GPIb) and collagen. The A2 domain hosts a proteolytic site for the VWF-cleavage enzyme A Disintegrin And Metalloprotease with a Thrombo Spondin type 1 motifs 13 (ADAMTS-13). Previous studies suggested that shear flow assists the ADAMTS-13 cleavage of VWF by unfolding the A2 domain and thus exposing the cryptic proteolytic site. Here we used steered molecular dynamics (SMD) to simulate the unfolding of the Al and A2 domains by tensile force. The forced unfolding of A2 started from the C-terminus because of its specific topology. The beta-strands of A2 were pulled out sequentially, generating sawtooth-like peaks in the force-extension curves. The disulfide bond between Al N- and C-termini prevented it from unfolding. After eliminating the disulfide bond, Al was unfolded similarly as A2 in terms of the beta-strand pullouts, but differed in the unfolding of helices. The major resistance of Al and A2 to unfolding came from the hydrogen bond networks of the central beta-sheets. Two different unfolding pathways of the betastrands were observed, where the sliding pathway encountered much higher energy barrier than the unzipping pathway.
机译:血管性血友病因子(VWF)的三个串联A域(A1,A2和A3)对其功能起关键作用。 A1和A3结构域分别包含血小板糖蛋白Ib(GPIb)和胶原蛋白的结合位点。 A2域具有VWF裂解酶A整合素和金属蛋白酶的蛋白水解位点,该酶具有Thrombo Spondin 1型基序13(ADAMTS-13)。先前的研究表明,剪切流通过展开A2结构域并由此暴露出隐秘的蛋白水解位点来帮助VWF的ADAMTS-13裂解。在这里,我们使用转向分子动力学(SMD)来模拟拉伸力对Al和A2域的展开。由于其特定的拓扑结构,A2的强制展开从C末端开始。依次拉出A2的β链,在力-延伸曲线中产生锯齿状的峰。 Al N-和C-末端之间的二硫键阻止其展开。在消除二硫键之后,就β链的拉出而言,A1与A2类似地展开,但是在螺旋上的展开不同。 Al和A2对展开的主要阻力来自中央β-折叠的氢键网络。观察到β链的两种不同的展开路径,其中滑动路径比展开路径遇到更高的能量屏障。

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