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首页> 外文期刊>Biological chemistry >Plasminogen hydrolysis by cathepsin S and identification of derived peptides as selective substrate for cathepsin V and cathepsin L inhibitor.
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Plasminogen hydrolysis by cathepsin S and identification of derived peptides as selective substrate for cathepsin V and cathepsin L inhibitor.

机译:组织蛋白酶S水解纤溶酶原,鉴定衍生的肽作为组织蛋白酶V和组织蛋白酶L抑制剂的选择性底物。

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Plasminogen is a glycoprotein implicated in angiogenesis and fibrin clot degradation associated with the release of angiostatin and plasmin activation, respectively. We have recently reported that cathepsin V, but not cathepsins L, B, and K, can release angiostatin-like fragments from plasminogen. Here, we extended the investigation to cathepsin S which has been implicated in angiogenesis and tumor cell proliferation. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis of plasminogen hydrolysis by cathepsin S revealed generation of two fragments (60 and 38 kDa). Amino-terminal sequencing indicated that cleavage occurs at the Leu469-Leu470 peptide bond. In contrast to cathepsin V, which possesses antiangiogenic activity, cathepsin S plasminogen cleavage products were not capable of inhibiting angiogenesis on endothelial cells. Moreover, we explored the different selectivities presented by cathepsins V and S towards plasminogen and synthesized fluorescence resonance energy transfer peptides encompassing the hydrolyzed peptide bonds by both enzymes. The peptide Abz-VLFEKKQ-EDDnp (Abz=ortho-aminobenzoic acid; EDDnp= N-[2,4-dinitrophenyl]ethylenediamine), hydrolyzed by cath-epsin V at the Phe-Glu bond, is a selective substrate for the enzyme when compared with cathepsins B, L, and S, whereas Abz-VLFEKKVYLQ-EDDnp is an efficient cathepsin L inhibitor. The demonstrated importance of the S(3)'-P(3)' interaction indicates the significance of the extended subsites for enzyme specificity and affinity.
机译:纤溶酶原是一种糖蛋白,分别与血管生成抑制素和纤溶酶的活化有关,与血管生成和血纤蛋白凝块降解有关。最近,我们报道组织蛋白酶V,但不是组织蛋白酶L,B和K可以从纤溶酶原释放血管生成抑制素样片段。在这里,我们扩大了对组织蛋白酶S的研究,这与血管生成和肿瘤细胞的增殖有关。组织蛋白酶S对纤溶酶原水解的十二烷基硫酸钠-聚丙烯酰胺钠凝胶电泳分析表明产生了两个片段(60和38 kDa)。氨基末端测序表明切割发生在Leu469-Leu470肽键上。与具有抗血管生成活性的组织蛋白酶V相反,组织蛋白酶S纤溶酶原裂解产物不能抑制内皮细胞上的血管生成。此外,我们探索了组织蛋白酶V和S对纤溶酶原的不同选择性,并合成了包含两种酶水解的肽键的荧光共振能量转移肽。肽Abz-VLFEKKQ-EDDnp(Abz =正氨基苯甲酸; EDDnp = N- [2,4-二硝基苯基]乙二胺)在Phe-Glu键上被蛋白酶E水解,是该酶的选择性底物与组织蛋白酶B,L和S相比,Abz-VLFEKKVYLQ-EDDnp是一种有效的组织蛋白酶L抑制剂。 S(3)'-P(3)'相互作用的已证明的重要性表明了扩展的亚位点的酶特异性和亲和力的重要性。

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