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首页> 外文期刊>Journal of thrombosis and haemostasis: JTH >Oxidized von Willebrand factor is efficiently cleaved by serine proteases from primary granules of leukocytes: divergence from ADAMTS-13.
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Oxidized von Willebrand factor is efficiently cleaved by serine proteases from primary granules of leukocytes: divergence from ADAMTS-13.

机译:氧化的von Willebrand因子可以被白细胞初级颗粒中的丝氨酸蛋白酶有效地裂解:与ADAMTS-13的不同。

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摘要

BACKGROUND: The leukocyte serine proteases (LSPs) elastase, proteinase 3 and cathepsin G cleave von Willebrand factor (VWF) near or at the same cleavage site (Tyr1605-Met1606) as ADAMTS-13, the metalloprotease that specifically controls the proteolytic processing of VWF. Recent studies have shown that oxidation of VWF at Met1606 with formation of methionine sulfoxide (MetSO) severely impairs its proteolysis by ADAMTS-13. METHODS: This study was aimed at assessing whether or not oxidation of VWF by reactive oxygen species (ROS) can also affect its cleavage by elastase, proteinase 3, and cathepsin G. In this study, the catalytic specificity of hydrolysis by LSPs of the VWF peptide substrate VWF74 and full-length VWF, both unaltered and in the oxidized form, was measured by RP-HPLC, electrophoretic and mass spectrometry methods. RESULTS: LSPs cleaved both VWF multimers and VWF74 near or at the same peptide bond as is cleaved by ADAMTS-13, with k(cat)/K(m) values similar to those of the metalloprotease. However, unlike ADAMTS-13, cathepsin G cleaved VWF74 containing a MetSO residue at position 1606 with a k(cat)/K(m) value higher than that for VWF74, whereas the catalytic efficiencies of both elastase and proteinase 3 were unaffected by the replacement of Met1606 with MetSO. Likewise, oxidation of VWF multimers by hypochlorous acid and ROS, produced by activated leukocytes, improved their hydrolysis by LSPs. CONCLUSIONS: Oxidation by leukocyte ROS has a net positive effect on the cleavage of VWF multimers by LSPs, under conditions where high concentrations of oxidant species would severely reduce the proteolytic efficiency of ADAMTS-13.
机译:背景:白细胞丝氨酸蛋白酶(LSPs)弹性蛋白酶,蛋白酶3和组织蛋白酶G在与ADAMTS-13相同或相同的裂解位点(Tyr1605-Met1606)裂解von Willebrand因子(VWF),后者是金属蛋白酶,专门控制VWF的蛋白水解过程。 。最近的研究表明,在Met1606上VWF的氧化和蛋氨酸亚砜(MetSO)的形成严重损害了ADAMTS-13的蛋白水解作用。方法:本研究旨在评估活性氧(ROS)对VWF的氧化是否也能影响其被弹性蛋白酶,蛋白酶3和组织蛋白酶G的裂解。在这项研究中,VWF的LSPs水解的催化特异性肽底物VWF74和全长VWF均未改变且呈氧化形式,通过RP-HPLC,电泳和质谱法进行测量。结果:LSPs在与ADAMTS-13相同的肽键附近或附近切割了VWF多聚体和VWF74,其k(cat)/ K(m)值与金属蛋白酶相似。但是,与ADAMTS-13不同,组织蛋白酶G裂解的VWF74在1606位含有MetSO残基,其ak(cat)/ K(m)值比VWF74高,而弹性蛋白酶和蛋白酶3的催化效率不受置换的影响MetSO与Met1606结合使用。同样,活化的白细胞产生的次氯酸和ROS氧化VWF多聚体,可改善LSP的水解作用。结论:在高浓度氧化剂会严重降低ADAMTS-13的蛋白水解效率的条件下,白细胞ROS的氧化对LSP裂解VWF多聚体具有净的积极影响。

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