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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Characterization of a fibrinolytic enzyme (ussurenase) from Agkistrodon blomhoffii ussurensis snake venom: insights into the effects of Ca2+ on function and structure.
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Characterization of a fibrinolytic enzyme (ussurenase) from Agkistrodon blomhoffii ussurensis snake venom: insights into the effects of Ca2+ on function and structure.

机译:蛇毒蛇毒中纤溶酶(ussurenase)的表征:洞悉Ca2 +对功能和结构的影响。

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Fibrino(geno)lytic enzymes from snake venoms have been identified as high quality therapeutic agents for treatment of blood clots and strokes. They act on fibrinogen and fibrin, leading to defibrinogenation of blood, lysis of fibrin, and a consequent decrease in blood viscosity. In this work, a fibrinolytic enzyme (ussurenase) from China Agkistrodon blomhoffii Ussurensis snake venom, was purified to homogeneity, identified as a stable 23,367.8 Da monomeric protein, and was identified as a new kind of snake venom metalloproteinase. Ussurenase reacts optimally with fibrin clots at pH 7.5-8.3 and a temperature of 33-41 degrees C. Although many fibrinolytic enzymes are known to be zinc-dependent, measurements from inductively coupled plasma-atomic emission spectroscopy (ICP-AES) reveal that ussurenase is a Ca2+-containing protein with a molar ratio of 1:1 ([Ca2+]:[enzyme]). Ca2+ is crucial to the fibrin clot hydrolysis by ussurenase but also plays an important role in maintaining the structural integrity of the enzyme. The addition of Ca2+ to the apoenzyme induces a conformational change making the environments surrounding the Trp residues of the enzyme more hydrophobic. The presence of Ca2+ also increases the structural stability of ussurenase, so that higher concentrations of the denaturant guanidine hydrochloride are required to denature the native ussurenase compared to the apo-form. UV absorption and CD spectroscopy experiments show that Ca2+ increases the thermostability and changes the secondary structure of ussurenase. All these data suggest that Ca2+ is crucial for the correct folding and activity of ussurenase.
机译:来自蛇毒的纤维蛋白(基因)分解酶已被鉴定为治疗血栓和中风的高质量治疗剂。它们作用于血纤蛋白原和血纤蛋白,导致血液的血纤维蛋白原化,血纤蛋白溶解,并因此导致血液粘度降低。在这项工作中,来自中国蛇毒蛇毒蛇毒的纤溶酶(ussurenase)被纯化至均质,被鉴定为稳定的23,367.8 Da单体蛋白,被鉴定为一种新型蛇毒金属蛋白酶。 Ussurenase在pH 7.5-8.3和温度33-41摄氏度时与血纤蛋白凝块最佳反应。尽管已知许多血纤蛋白溶酶依赖锌,但通过电感耦合等离子体原子发射光谱法(ICP-AES)进行的测量显示,ussurenase是摩尔比为1:1([Ca2 +]:[酶])的含Ca2 +的蛋白质。 Ca2 +对Ussurenase对纤维蛋白凝块水解至关重要,但在维持酶的结构完整性方面也起着重要作用。向脱辅酶中添加Ca2 +会引起构象变化,从而使该酶的Trp残基周围的环境更加疏水。 Ca 2+的存在还增加了伞形糖苷酶的结构稳定性,因此与脱辅基形式相比,需要更高浓度的变性胍基盐酸盐来变性天然伞形糖苷酶。紫外吸收和CD光谱实验表明,Ca2 +可提高热稳定性并改变Ussurenase的二级结构。所有这些数据表明,Ca2 +对于Ussurenase的正确折叠和活性至关重要。

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