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模型底物的异构体特异性蛋白水解:脯氨酸残基位置对顺式/反式特异性的影响。

Isomer-specific proteolysis of model substrates: influence that the location of the proline residue exerts on cis/trans specificity.

作者信息

Lin L N, Brandts J F

出版信息

Biochemistry. 1985 Nov 5;24(23):6533-8. doi: 10.1021/bi00344a034.

Abstract

In an effort to further develop the technique of isomer-specific proteolysis, a number of proline-containing substrates were subjected to hydrolysis in the presence of chymotrypsin, trypsin, or prolidase. The objective was to determine whether direct hydrolysis of the cis form of the substrate could occur and, if so, the extent to which it is slower than the hydrolysis of the equivalent trans form. It is shown that for both peptide and amide substrates, which contain proline at the P2 position, the cis form can be hydrolyzed directly by either chymotrypsin or trypsin, in contrast to earlier suggestions in the literature. For similar amide substrates, it was found that chymotrypsin has a lower catalytic efficiency for the cis form, relative to the trans form, by a factor of 20 000 while, for trypsin and its substrate, the cis form was cleaved about 2000 times less efficiently. Results for a trypsin substrate with proline at the P2' position, rather than the P2 position, were quite different however, since there was no indication that the cis form could be directly cleaved even at the highest enzyme concentration. There was also no indication that prolidase could cleave the dipeptide Phe-Pro when the active bond itself is in the cis form. These collective results suggest that the ability of proteases to cleave a substrate with a cis peptide bond depends strongly on the location of the cis bond relative to the active bond that is being cleaved.

摘要

为了进一步发展异构体特异性蛋白水解技术,使多种含脯氨酸的底物在胰凝乳蛋白酶、胰蛋白酶或脯氨酰肽酶存在的情况下进行水解。目的是确定底物的顺式异构体是否能直接发生水解,如果可以,其水解速度比相应反式异构体的水解速度慢多少。结果表明,对于在P2位置含有脯氨酸的肽和酰胺底物,与文献中早期的观点相反,顺式异构体可被胰凝乳蛋白酶或胰蛋白酶直接水解。对于类似的酰胺底物,发现相对于反式异构体,胰凝乳蛋白酶对顺式异构体的催化效率低20000倍,而对于胰蛋白酶及其底物,顺式异构体的切割效率低约2000倍。然而,对于在P2'位置而非P2位置含有脯氨酸的胰蛋白酶底物,结果却大不相同,因为即使在最高酶浓度下,也没有迹象表明顺式异构体可被直接切割。也没有迹象表明脯氨酰肽酶能切割活性键本身为顺式形式的二肽苯丙氨酸-脯氨酸。这些总体结果表明,蛋白酶切割具有顺式肽键底物的能力在很大程度上取决于顺式键相对于被切割活性键的位置。

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