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卡氏蟒蛇毒提取物trocarin的三维溶液结构:凝血因子Xa和凝血酶原激活剂的结构同源物。

Three-dimensional solution structure of Tropidechis carinatus venom extract trocarin: a structural homologue of Xa and prothrombin activator.

作者信息

Venkateswarlu Divi, Krishnaswamy Sriram, Darden Thomas A, Pedersen Lee G

机构信息

Department of Chemistry, Venable Hall, CB#3290, University of North Carolina, Chapel Hill, NC 27599, USA.

出版信息

J Mol Model. 2002 Oct;8(10):302-13. doi: 10.1007/s00894-002-0099-4. Epub 2002 Oct 3.

Abstract

Trocarin belongs to group D of prothrombin activators derived from snake venom of Tropidechis carinatus and is a rich non-hepatic source of Xa, the only known hepatic prothrombin activator. The structural and functional similarity with Xa makes trocarin an interesting target for exploring the structure-functional relationship with Xa. Herein we report a predicted complete three-dimensional all-atom structural model of trocarin equilibrated in explicit water using 4 ns of molecular dynamics simulation. The tertiary structure was modeled using the structure of human blood coagulation factor Xa. The conformational and structural features of trocarin are then compared with the X-ray crystal and solution simulation structures of human factor Xa. The modeled structure of trocarin has four individual domains (Gla, EGF1, EGF2 and SP) connected along the long axis with similar secondary structural elements to Xa. The simulations suggest that sodium ion binding in the serine protease domain is impaired in trocarin as compared to Xa. In contrast to Xa, for which the sodium ion forms an octahedral coordination network that brings two loop regions connecting four anti-parallel beta-sheets together, we do not find a similar pattern of network in trocarin. We observe that the difference in the binding pattern of sodium ion leads to a approximately 2-A "shrinkage" of the beta2 strand (B2), in comparison to human Xa, as marked by a shorter distance between 189Asp373 (S1-site residue) and 195Ser379 (active-site residue) in the B2 strand. We propose that these differences may be linked to the experimentally observed lower amidolytic activity of trocarin as compared to Xa.

摘要

曲卡林属于源自三角头蝰蛇蛇毒的凝血酶原激活剂D组,是一种丰富的非肝脏来源的Xa因子,Xa因子是唯一已知的肝脏凝血酶原激活剂。曲卡林与Xa因子在结构和功能上的相似性使其成为探索与Xa因子结构-功能关系的有趣靶点。在此,我们报告了通过4纳秒分子动力学模拟在显式水中平衡的曲卡林的预测完整三维全原子结构模型。三级结构是使用人凝血因子Xa的结构建模的。然后将曲卡林的构象和结构特征与人因子Xa的X射线晶体结构和溶液模拟结构进行比较。曲卡林的建模结构有四个独立的结构域(Gla、EGF1、EGF2和SP),沿长轴连接,其二级结构元件与Xa因子相似。模拟表明,与Xa因子相比,曲卡林丝氨酸蛋白酶结构域中的钠离子结合受到损害。与Xa因子不同,Xa因子的钠离子形成一个八面体配位网络,将连接四个反平行β折叠的两个环区域聚集在一起,而在曲卡林中我们没有发现类似的网络模式。我们观察到,钠离子结合模式的差异导致β2链(B2)与人类Xa因子相比大约有2埃的“收缩”,这表现为B2链中189Asp373(S1位点残基)和195Ser379(活性位点残基)之间的距离更短。我们提出这些差异可能与实验观察到的曲卡林与Xa因子相比较低的酰胺水解活性有关。

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