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Biophysical Characterization of Anticoagulant Hemextin AB Complex from the Venom of Snake Hemachatus haemachatus

机译:蛇Hemachatus haemachatus毒液中抗凝血凝素AB复合物的生物物理特性

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摘要

Hemextin AB complex from the venom of Hemachatus haemachatus is the first known natural anticoagulant that specifically inhibits the enzymatic activity of blood coagulation factor VIIa in the absence of factor Xa. It is also the only known heterotetrameric complex of two three-finger toxins. Individually only hemextin A has mild anticoagulant activity, whereas hemextin B is inactive. However, hemextin B synergistically enhances the anticoagulant activity of hemextin A and their complex exhibits potent anticoagulant activity. In this study we characterized the nature of molecular interactions leading to the complex formation. Circular dichroism studies indicate the stabilization of β-sheet in the complex. Hemextin AB complex has an increased apparent molecular diameter in both gas and liquid phase techniques. The complex formation is enthalpically favorable and entropically unfavorable with a negative change in the heat capacity. Thus, the anticoagulant complex shows less structural flexibility than individual subunits. Both electrostatic and hydrophobic interactions are important for the complexation; the former driving the process and the latter helping in the stabilization of the tetramer. The tetramer dissociates into dimers and monomers with the increase in the ionic strength of the solution and also with increase in the glycerol concentration in the buffer. The two dimers formed under each of these conditions display distinct differences in their apparent molecular diameters and anticoagulant properties. Based on these results, we have proposed a model for this unique anticoagulant complex.
机译:来自嗜血疟原虫毒液的Hemextin AB复合物是第一种已知的天然抗凝剂,在不存在Xa因子的情况下,其特异性抑制凝血因子VIIa的酶活性。它也是唯一已知的两种三指毒素的异四聚体复合物。单独地,只有hemextin A具有适度的抗凝活性,而hemextin B没有活性。然而,hemextin B协同增强了hemextin A的抗凝活性,并且它们的复合物表现出有效的抗凝活性。在这项研究中,我们表征了导致复合物形成的分子相互作用的性质。圆二色性研究表明复合物中β-片层的稳定。 Hemextin AB复合物在气相和液相技术中均具有增加的表观分子直径。复合物的形成在焓上是有利的,而在熵上是不利的,而热容发生负向变化。因此,抗凝复合物显示出比单个亚基小的结构柔性。静电和疏水相互作用对于络合都很重要。前者驱动该过程,后者帮助稳定四聚体。随着溶液离子强度的增加以及缓冲液中甘油浓度的增加,四聚体分解为二聚体和单体。在这些条件中的每一个条件下形成的两个二聚体在其表观分子直径和抗凝性能方面显示出明显的差异。基于这些结果,我们提出了这种独特的抗凝复合物的模型。

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