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首页> 外文期刊>MedChemComm >Energy minimized crystal structures of P-selectins based on molecular dynamics simulation: Leading to two average structures capable of designing anti-thrombotic agents
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Energy minimized crystal structures of P-selectins based on molecular dynamics simulation: Leading to two average structures capable of designing anti-thrombotic agents

机译:基于分子动力学模拟的P-选择素的能量最小化晶体结构:导致能够设计抗血栓形成剂的两种平均结构

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摘要

In the most frequent cardiovascular events, deep vein thrombosis has been one of the most prominent causes of morbidity and mortality. Soluble P-selectin plays an essential role in the formation of thrombosis and has been considered a target of anti-thrombotic agents. With regard to molecular modeling, here the theoretical studies were performed on variant P-selectin structures. By removing SLe~x from PDB 1G1R or removing both SLe~x and PSGL-1 from PDB 1G1S, minimizing the energy of the formed structures, and performing molecular dynamics simulations, two average structures of P-selectins were obtained. A series of comparisons of the properties reflecting the quality of the two average structures, such as the backbone RMSD values, RMSF values, the change of the secondary structures, the conformation flexible regions and the correlated motions demonstrated that both of the two average structures are suitable and equally important for anti-thrombotic agent design.
机译:在最常见的心血管事件中,深静脉血栓形成一直是发病率和死亡率的最突出原因之一。可溶性P-选择蛋白在血栓形成中起重要作用,并被认为是抗血栓形成剂的靶标。关于分子建模,这里对变异的P-选择蛋白结构进行了理论研究。通过从PDB 1G1R中去除SLe_x或从PDB 1G1S中去除SLe_x和PSGL-1,最小化所形成结构的能量,并进行分子动力学模拟,可以获得P-选择蛋白的两个平均结构。一系列反映两个平均结构质量的特性比较,例如骨架RMSD值,RMSF值,二级结构的变化,构象柔性区和相关运动,证明两个平均结构都是适用于抗血栓药设计,并且同样重要。

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