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抗凝、FXa结合蝰蛇科蛇毒磷脂酶A2的结构与功能表征

Structural and Functional Characterization of Anticoagulant, FXa-binding Viperidae Snake Venom Phospholipases A2.

作者信息

Faure Grazyna, Saul Frederick

出版信息

Acta Chim Slov. 2011 Dec;58(4):671-7.

Abstract

Certain snake venom phospholipases A2 (PLA2) have been identified as specific, non-competitive blood coagulation inhibitors that bind with high affinity to human activated blood coagulation factor X (hFXa). Recent determination of the three-dimensional structures of PLA2 isoforms which differ in anticoagulant activity contributes to a better understanding of their mode of binding to human FXa. Detailed analysis of the crystal structures of natural PLA2 isoforms from Viperidae snake venom which differ in binding affinity to hFXa allows us to detect local conformational changes and precisely delineate the role of critical residues in the anticoagulant function of these PLA2. We find conformational changes at conserved position Lys127 and mutated position Lys128 > Glu in the C-terminal regions of less potent anticoagulant PLA2 (AtxC and CBa2), which contribute to the observed decrease in affinity for hFXa. The mutation His1 > Ser in less potent CBa2 is associated with a significant displacement of the side chain of Lys69 and Trp70 in the loop 65-72 and could also explain the reduced anticoagulant activity of the CBa2-FXa complex. Knowledge of the spatial arrangement of the sites of interaction of PLA2 with hFXa is important for understanding of the hemostatic process at the molecular level and could provide new anticoagulant drug leads.

摘要

某些蛇毒磷脂酶A2(PLA2)已被鉴定为特异性、非竞争性凝血抑制剂,它们与人类活化凝血因子X(hFXa)具有高亲和力结合。最近对具有不同抗凝活性的PLA2同工型三维结构的测定有助于更好地理解它们与人类FXa的结合模式。对来自蝰蛇科蛇毒的天然PLA2同工型晶体结构进行详细分析,这些同工型对hFXa的结合亲和力不同,这使我们能够检测局部构象变化,并精确描述关键残基在这些PLA2抗凝功能中的作用。我们发现在抗凝活性较弱的PLA2(AtxC和CBa2)的C末端区域,保守位置Lys127和突变位置Lys128 > Glu处存在构象变化,这导致观察到的对hFXa亲和力降低。在抗凝活性较弱的CBa2中,His1 > Ser突变与65 - 72环中Lys69和Trp70侧链的显著位移有关,这也可以解释CBa2 - FXa复合物抗凝活性降低的原因。了解PLA2与hFXa相互作用位点的空间排列对于在分子水平上理解止血过程很重要,并且可以提供新的抗凝药物先导物。

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