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The cooperative activity between the carboxyl-terminal TSP1 repeats and the CUB domains of ADAMTS13 is crucial for recognition of von Willebrand factor under flow

机译:羧基末端TSP1重复序列与ADAMTS13的CUB结构域之间的协作活性对于识别流动下的von Willebrand因子至关重要

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摘要

ADAMTS13 cleaves von Willebrand factor (VWF) between Tyr1605 and Met1606 residues at the central A2 subunit. The amino-terminus of ADAMTS13 protease appears to be sufficient to bind and cleave VWF under static and denatured condition. However, the role of the carboxyl-terminus of ADAMTS13 in substrate recognition remains controversial. Present study demonstrates that ADAMTS13 cleaves VWF in a rotation speed– and protease concentration–dependent manner on a mini vortexer. Removal of the CUB domains (delCUB) or truncation after the spacer domain (MDTCS) significantly impairs its ability to cleave VWF under the same condition. ADAMTS13 and delCUB (but not MDTCS) bind VWF under flow with dissociation constants (KD) of about 50 nM and about 274 nM, respectively. The isolated CUB domains are neither sufficient to bind VWF detectably nor capable of inhibiting proteolytic cleavage of VWF by ADAMTS13 under flow. Addition of the TSP1 5-8 (T5-8CUB) or TSP1 2-8 repeats (T2-8CUB) to the CUB domains restores the binding affinity toward VWF and the inhibitory effect on cleavage of VWF by ADAMTS13 under flow. These data demonstrate directly and quantitatively that the cooperative activity between the middle carboxyl-terminal TSP1 repeats and the distal carboxyl-terminal CUB domains may be crucial for recognition and cleavage of VWF under flow.
机译:ADAMTS13在中央A2亚基的Tyr1605和Met1606残基之间切割von Willebrand因子(VWF)。在静态和变性条件下,ADAMTS13蛋白酶的氨基末端似乎足以结合和切割VWF。但是,ADAMTS13羧基末端在底物识别中的作用仍存在争议。目前的研究表明,ADAMTS13在微型涡旋仪上以旋转速度和蛋白酶浓度依赖性方式裂解VWF。在相同条件下,CUB结构域(delCUB)的去除或间隔域(MDTCS)后的截短会大大削弱其切割VWF的能力。 ADAMTS13和delCUB(但不是MDTCS)在流动时以约50 nM和约274 nM的解离常数(KD)结合VWF。分离的CUB结构域既不足以可检测地结合VWF,也不能抑制ADAMTS13在流动下对VWF的蛋白水解切割。将TSP1 5-8(T5-8CUB)或TSP1 2-8重复序列(T2-8CUB)添加到CUB域中可恢复对VWF的结合亲和力,并抑制ADAMTS13在流动下对VWF裂解的抑制作用。这些数据直接和定量地证明,中间羧基末端TSP1重复序列与远端羧基末端CUB结构域之间的协作活性对于识别和切割流动中的VWF可能至关重要。

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