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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The role of the ADAMTS13 cysteine-rich domain in VWF binding and proteolysis
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The role of the ADAMTS13 cysteine-rich domain in VWF binding and proteolysis

机译:ADAMTS13富含半胱氨酸的结构域在VWF结合和蛋白水解中的作用

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ADAMTS13 proteolytically regulates the platelet-tethering function of von Willebrand factor (VWF). ADAMTS13 function is dependent upon multiple exosites that specifically bind the unraveled VWF A2 domain and enable proteolysis. We carried out a comprehensive functional analysis of the ADAMTS13 cysteine-rich (Cys-rich) domain using engineered glycans, sequence swaps, and single point mutations in this domain. Mutagenesis of Cys-rich domain-charged residues had no major effect on ADAMTS13 function, and 5 out of 6 engineered glycans on the Cys-rich domain also had no effect on ADAMTS13 function. However, a glycan attached at position 476 appreciably reduced both VWF binding and proteolysis. Substitution of Cys-rich sequences for the corresponding regions in ADAMTS1 identified a hydrophobic pocket involving residues Gly471-Val474 as being of critical importance for both VWF binding and proteolysis. Substitution of hydrophobic VWF A2 domain residues to serine in a region (residues 1642-1659) previously postulated to interact with the Cys-rich domain revealed the functional importance of VWF residues Ile1642, Trp1644, Ile1649, Leu1650, and Ile1651. Furthermore, the functional deficit of the ADAMTS13 Cys-rich Gly471-Val474 variant was dependent on these same hydrophobic VWF residues, suggesting that these regions form complementary binding sites that directly interact to enhance the efficiency of the proteolytic reaction.
机译:ADAMTS13蛋白水解调节血管性假血友病因子(VWF)的血小板束缚功能。 ADAMTS13的功能取决于多个异质体,这些异质体特异性结合解散的VWF A2域并实现蛋白水解。我们使用工程化的聚糖,序列交换和该域中的单点突变对ADAMTS13富含半胱氨酸(富含Cys)域进行了全面的功能分析。富含Cys的结构域带电荷的残基的诱变对ADAMTS13的功能没有重大影响,富含Cys的域的6个工程化聚糖中有5个对ADAMTS13的功能也没有影响。然而,在476位连接的聚糖明显降低了VWF结合和蛋白水解作用。 ADAMTS1中相应区域的富含Cys的序列的替换确定了包含残基Gly471-Val474的疏水口袋对于VWF结合和蛋白水解都至关重要。疏水性的VWF A2结构域残基取代为先前假定与富Cys结构域相互作用的区域(残基1642-1659)中的丝氨酸,揭示了VWF残基Ile1642,Trp1644,Ile1649,Leu1650和Ile1651的功能重要性。此外,ADAMTS13富含Cys的Gly471-Val474变体的功能缺陷取决于这些相同的疏水性VWF残基,表明这些区域形成了直接相互作用以增强蛋白水解反应效率的互补结合位点。

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