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首页> 外文期刊>Journal of biochemical and molecular toxicology >Molecular modeling, biochemical characterization, and pharmacological properties of Cc 3 3 ‐SPase: A platelet‐aggregating thrombin‐like enzyme purified from Cerastes cerastes Cerastes cerastes venom
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Molecular modeling, biochemical characterization, and pharmacological properties of Cc 3 3 ‐SPase: A platelet‐aggregating thrombin‐like enzyme purified from Cerastes cerastes Cerastes cerastes venom

机译:CC 3-Spase的分子建模,生化表征和药理学特性:纯化血小板聚集凝血酶样酶毒素毒素毒素毒液

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摘要

Abstract Cc 3 ‐SPase (30 kDa‐proteinase; pI 5.98) was isolated from Cerastes cerastes venom. Its sequence of 271 residues yielded from LC‐MALDI‐TOF showed high degrees of homology when aligned with other proteinases. Cc 3 ‐SPase cleaved natural and synthetic proteins such as casein and fibrinogen leaving fibrin clots unaffected. Cc 3 ‐SPase was fully abolished by ion chelators, whereas aprotinin, antithrombin III (Sigma Aldrich, Saint‐Louis, Missouri, USA), and heparin were ineffective. Affinity of Cc 3 ‐SPase to benzamidine indicated the presence of an aspartate residue in the catalytic site as confirmed by three‐dimensional structure consisting of 14 β‐ strands and four α‐ helices. Molecular mechanisms revealed that Cc 3 ‐SPase is capable of promoting dysfunctional platelet aggregation via two signaling pathways mediated by the G‐coupled protein receptors and αIIbβ3 integrin. Cc 3 ‐SPase is involved in both extrinsic/intrinsic coagulation pathways in deficient plasmas by replacing defective/lacking factors FII, FVII, and FVIII but not FX. Cc 3 ‐SPase could substitute missing factors in blood diseases related to plasma factor deficiencies.
机译:摘要CC 3-酶(30 kda-蛋白酶; PI 5.98)与斯科斯特斯科斯毒液分离出来。当与其他蛋白酶对准时,其从LC-MALDI-TOF产生的271个残基的序列显示出高度的同源性。 CC 3-胱糖裂解自然和合成蛋白,如酪蛋白和纤维蛋白原,留下纤维蛋白凝块未受影响。通过离子螯合剂完全废除CC 3-胱糖酶,而抑肽蛋白,抗胰蛋白酶III(Sigma Aldrich,Saint-Louis,Missouri,USA)和肝素是无效的。 CC 3-苯胺对苯甲丝的亲和力表明,通过由14β-股和四个α-螺旋组成的三维结构证实了催化部位中的天冬氨酸残基存在。分子机制显示CC 3-酶能够通过由G偶联蛋白受体和αiibβ3整联蛋白介导的两个信号传导途径来促进功能障碍血小板聚集。通过替代缺陷/缺乏因素FII,FVII和FVIII但不是FX,CC 3-酶涉及缺陷的等离子体中的外部/固有凝血途径。 CC 3-酶可以替代与血浆因子缺陷相关的血液疾病中的缺失因子。

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