首页> 美国卫生研究院文献>Indian Journal of Hematology Blood Transfusion >Cupincin: A Novel Cupin Domain Containing Protease from Rice (Oryza sativa L.) Bran Comprising of Procoagulant and Fibrinogenolytic Activity
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Cupincin: A Novel Cupin Domain Containing Protease from Rice (Oryza sativa L.) Bran Comprising of Procoagulant and Fibrinogenolytic Activity

机译:铜霉素:一种新型的含蛋白酶的水稻铜蛋白结构域该蛋白酶来自水稻(Oryza sativa L.)麸皮具有促凝血和纤维蛋白原分解活性

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摘要

The current study was carried out to evaluate the pharmacological properties of cupincin- A novel cupin domain containing metalloprotease with limited proteolysis from rice bran on blood coagulation and hydrolysis of human fibrinogen. Cupincin preferentially hydrolyzed the Aα chain of fibrinogen and then the Bβ-chain, but not the γ-chain. Cupincin reduced the re-calcification time of citrated human plasma dose dependently. Analysis of citrated whole blood in the presence of cupincin by rotem showed a decrease in coagulation time and clot formation time. Sonoclot analysis indicated that cupincin cleaved fibrinogen of whole citrated blood. SDS-PAGE and sonoclot analysis (LI-30) indicated that cupincin lacked plasmin-like activity. Global hemostasis tests like rotem and sonoclot analysis determined cupincin as a procoagulant enzyme. Cupincin did not show any effect on prothrombin time and activated partial thromboplastin time tests suggesting its action on the common pathway of coagulation. The involvement of proteases from rice (Oryza sativa L.) in haemostasis has never been exploited before. This study could provide the basis for the development of new procoagulant agents from a nontoxic source like rice.
机译:当前的研究是为了评估铜杯蛋白的药理特性。铜杯蛋白是一种新型的含金属蛋白酶的铜杯蛋白域,其米糠蛋白水解作用有限,对人血纤维蛋白原的凝血和水解作用。 Cupincin优先水解纤维蛋白原的Aα链,然后水解Bβ链,但不水解γ链。 Cupincin依赖地减少了柠檬酸化人血浆的重新钙化时间。通过杯状分析在存在铜霉素的情况下对柠檬酸化全血进行分析,结果表明凝血时间和血凝块形成时间均减少。 Sonoclot分析表明,cupincin裂解了全柠檬酸血纤维蛋白原。 SDS-PAGE和Sonoclot分析(LI-30)表明,cupincin缺乏纤溶酶样活性。全身止血测试(例如,rotem和sonoclot分析)确定了cupincin作为促凝血酶。 Cupincin对凝血酶原时间没有显示任何影响,并且活化的部分凝血活酶时间测试表明它对凝血的共同途径起作用。水稻(Oryza sativa L.)中的蛋白酶参与止血作用以前从未被开发过。该研究可为从无毒来源如大米开发新型促凝剂提供基础。

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