首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Mutation of the H-bond acceptor S119 in the ADAMTS13 metalloprotease domain reduces secretion and substrate turnover in a patient with congenital thrombotic thrombocytopenic purpura.
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Mutation of the H-bond acceptor S119 in the ADAMTS13 metalloprotease domain reduces secretion and substrate turnover in a patient with congenital thrombotic thrombocytopenic purpura.

机译:在患有先天性血栓性血小板减少性紫癜的患者中,ADAMTS13金属蛋白酶域中H键受体S119的突变可减少分泌和底物更新。

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摘要

Hereditary thrombotic thrombocytopenic purpura is caused by mutations in a disintegrin and metalloprotease with thrombospondin motifs (ADAMTS13) resulting in defective processing of von Willebrand factor (VWF) that causes intravascular platelet aggregation culminating in thrombocytopenia with shistocytic anemia. In this study the functional and structural role of a recently identified ADAMTS13 metalloprotease domain mutation S119F was investigated. Secretion from heterologous cells was hampered but not completely eliminated. Secreted S119F was active toward multimeric VWF and FRETS-VWF73 but with abnormal kinetics, having a significantly reduced overall catalytic rate (k(cat); 0.88 +/- 0.04 s(-1) vs 2.78 +/- 0.11 s(-1)) and slightly smaller Michaelis constant (K(M); 1.4 +/- 0.2microM vs 2.3 +/- 0.3microM). A computational model of the metalloprotease domain demonstrates both steric and polar interaction effects caused by S119F. Interestingly, mutant S119A has properties similar to S119F (k(cat) = 0.82 +/- 0.03 s(-1) and K(M) = 1.1 +/- 0.1microM), allowing to assign distorted kinetics to the loss of the H-bond with conserved residue W262. We conclude that the S119-W262 H-bond is crucial for maximal turnover.
机译:遗传性血栓性血小板减少性紫癜是由具有血小板反应蛋白基序的整合素和金属蛋白酶(ADAMTS13)中的突变引起的,导致对血管性血友病因子(VWF)的加工不良,导致血管内血小板聚集,最终导致血小板减少症与造血细胞性贫血。在这项研究中,研究了最近鉴定出的ADAMTS13金属蛋白酶结构域突变S119F的功能和结构作用。异源细胞的分泌受到阻碍,但并未完全消除。分泌的S119F对多聚VWF和FRETS-VWF73具有活性,但动力学异常,具有显着降低的总催化速率(k(cat); 0.88 +/- 0.04 s(-1)对2.78 +/- 0.11 s(-1) )和较小的米氏常数(K(M); 1.4 +/- 0.2microM与2.3 +/- 0.3microM)。金属蛋白酶结构域的计算模型证明了S119F引起的空间相互作用和极性相互作用。有趣的是,突变体S119A具有类似于S119F的特性(k(cat)= 0.82 +/- 0.03 s(-1)和K(M)= 1.1 +/- 0.1microM),从而可以将扭曲的动力学分配给H的损失-与保守残基W262键合。我们得出结论,S119-W262 H键对于最大周转至关重要。

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