首页> 外文期刊>Thrombosis and Haemostasis: Journal of the International Society on Thrombosis and Haemostasis >Crotalase, a fibrinogen-clotting snake venom enzyme: primary structure and evidence for a fibrinogen recognition exosite different from thrombin.
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Crotalase, a fibrinogen-clotting snake venom enzyme: primary structure and evidence for a fibrinogen recognition exosite different from thrombin.

机译:Crotalase,一种纤维蛋白原凝结蛇毒酶:主要结构和与凝血酶不同的纤维蛋白原识别异位证据。

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摘要

Crotalase, a fibrinogen-clotting enzyme isolated from the venom of Crotalus adamanteus, and its overlapping fragments were subjected to Edman degradation. The resulting amino acid sequence [see text] characteristic of a serine proteinase. Comparison with thrombin, the physiological fibrinogen-clotting enzyme, showed that thrombin's fibrinogen-recognition exosite (FRE) is poorly represented in crotalase. Hirudin, a FRE-dependent inhibitor, had no effect on crotalase. Spatial modeling of crotalase yielded a possible alternative fibrinogen-recognition site comprised of Arg 60F, Lys 85, Lys 87, and Arg 107 (underlined in the sequence above). Crotalase also lacks thrombin's YPPW loop, as well as its functionally important ETW 146-148, and its heparin-binding site. The enzyme contains a single asparagine-linked glycosylation site, NFT, bearing neutral and amino sugars that account for 8.3% of the enzyme's total molecular weight of 29,027. The calculated absorbance of crotalase at 280 nm, 1%, cm(-1) is 15.2.
机译:猪屎豆酶,一种从猪屎豆的毒液中分离出来的纤维蛋白原凝结酶,及其重叠片段都经过了Edman降解。所得的丝氨酸蛋白酶特征性氨基酸序列[见正文]。与凝血酶(一种生理性纤维蛋白原凝结酶)的比较表明,凝血酶的纤维蛋白原识别异位酶(FRE)在谷胱甘肽酶中的含量很低。水rud素(一种依赖FRE的抑制剂)对crotalase无效。 crotalase的空间模型产生了一个可能的替代性纤维蛋白原识别位点,该位点由Arg 60F,Lys 85,Lys 87和Arg 107(在上面的序列中标有下划线)组成。谷胱甘肽酶也缺乏凝血酶的YPPW环,功能上重要的ETW 146-148及其肝素结合位点。该酶包含一个单天冬酰胺连接的糖基化位点NFT,带有中性和氨基糖,占该酶总分子量29,027的8.3%。在280 nm,1%,cm(-1)时,所测出的crotalase吸光度为15.2。

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