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用于探索组织蛋白酶B的pH依赖性底物特异性的荧光、内部淬灭肽。

Fluorescent, internally quenched, peptides for exploring the pH-dependent substrate specificity of cathepsin B.

作者信息

Ruzza Paolo, Quintieri Luigi, Osler Alessio, Calderan Andrea, Biondi Barbara, Floreani Maura, Guiotto Andrea, Borin Gianfranco

机构信息

Institute of Biomolecular Chemistry of CNR, Padua Unit, 35131 Padua, Italy.

出版信息

J Pept Sci. 2006 Jul;12(7):455-61. doi: 10.1002/psc.748.

Abstract

Cathepsin B is a cysteine protease that in tumor tissues is localized in both acidic lysosomes and extracellular spaces. It can catalyze the cleavage of peptide bonds by two mechanisms: endoproteolytic attack with a pH optimum around 7.4, and attack from the C-terminus with a pH optimum at 4.5-5.5. In this work, seven fluorescent, internally quenched, decapeptides have been synthesized using the prototypical cathepsin B selective substrate Z-Phe-Arg-AMC as a lead, and used to identify the structural factors determining the susceptibility of peptides to hydrolysis at acidic and neutral pH values. Each peptide differs from the others in one amino acid (residue 6) and contains a highly fluorescent Nma group linked to the alpha-amino function of the N-terminal Orn residue and a Dnp group linked to the side chain of the Lys(8) residue acting as a quencher. Proteolytic cleavage was monitored by measuring the increase of fluorescence at 440 nm upon excitation at 340 nm, and the cleavage sites were determined by HPLC followed by ESI-MS analysis. Peptides containing Ala or Phe at position 6 are good substrates for the enzyme at both pH 5.0 and 7.4. By contrast, those containing Glu, Asp, Lys or Val are not cleaved at all by cathepsin B at pH 7.4, and are poorly hydrolyzed at pH 5.0. These findings provide new information for the rational design of cathepsin B-activated peptide-containing anticancer drugs.

摘要

组织蛋白酶B是一种半胱氨酸蛋白酶,在肿瘤组织中定位于酸性溶酶体和细胞外空间。它可以通过两种机制催化肽键的裂解:在最适pH约为7.4时进行内切蛋白水解攻击,以及在最适pH为4.5 - 5.5时从C端进行攻击。在这项工作中,以组织蛋白酶B选择性原型底物Z-Phe-Arg-AMC为先导,合成了七种荧光、内部淬灭的十肽,并用于确定决定肽在酸性和中性pH值下水解敏感性的结构因素。每个肽在一个氨基酸(第6位残基)上与其他肽不同,并且包含一个与N端Orn残基的α-氨基功能相连的高荧光Nma基团和一个与作为淬灭剂的Lys(8)残基侧链相连的Dnp基团。通过测量在340 nm激发时440 nm处荧光的增加来监测蛋白水解裂解,并通过HPLC随后进行ESI-MS分析来确定裂解位点。在第6位含有Ala或Phe的肽在pH 5.0和7.4时都是该酶的良好底物。相比之下,那些含有Glu、Asp、Lys或Val的肽在pH 7.4时根本不被组织蛋白酶B裂解,在pH 5.0时水解程度也很低。这些发现为合理设计含组织蛋白酶B激活肽的抗癌药物提供了新的信息。

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