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脑内组织蛋白酶D和高分子量天冬氨酸内肽酶的底物特异性

Substrate specificity of cerebral cathepsin D and high-Mr aspartic endopeptidase.

作者信息

Azaryan A V, Galoyan A A

机构信息

Institute of Biochemistry, Yerevan, Union of Soviet Socialist Republics.

出版信息

J Neurosci Res. 1988 Feb;19(2):268-71. doi: 10.1002/jnr.490190213.

Abstract

The specificity of action of bovine brain cortex cathepsin D (EC 3.4.23.5) and high-Mr aspartic endopeptidase (EC 3.4.23.-) was studied with the vasoactive peptides renin substrate tetradecapeptide (RSTP), substance P (SP), and angiotensins I and II, and with model peptides--Lys-Pro-Ala-Glu-Phe-Phe (NO2)-Ala-Leu (I), Gly-Gly-His-Phe (NO2)-Phe-Ala-Leu-NH2 (II), and Abz-Ala-Ala-Phe-Phe-pNA (III). Cerebral aspartic peptidases show identical substrate specificity, cleaving the Leu10-Leu bond in RSTP and Phe-Phe in SP and peptide I-III, and not splitting angiotensins I and II. Because of the higher catalytic efficiency of cathepsin D (Kcat value), the specificity constants (Kcat/Km) for cathepsin D-catalyzed hydrolysis of substrates 1-111 are much higher than those for the high-Mr enzyme. High-Mr aspartic peptidase shares a number of properties with cathepsin D (sensitivity to pepstatin, substrate specificity, pH activity profile) and shows partial immunological identity; however, high-Mr aspartic peptidase has a specific activity 7-10 times lower than that of cathepsin D. The kinetic parameters of proteolysis of model peptides presented indicate that the high-Mr enzyme may be a complex of a single-chain cathepsin D with another polypeptide, although the possibility that it is an independent aspartic peptidase cannot be excluded.

摘要

利用血管活性肽肾素底物十四肽(RSTP)、P物质(SP)、血管紧张素I和II以及模型肽——Lys-Pro-Ala-Glu-Phe-Phe(NO2)-Ala-Leu(I)、Gly-Gly-His-Phe(NO2)-Phe-Ala-Leu-NH2(II)和Abz-Ala-Ala-Phe-Phe-pNA(III),研究了牛脑皮质组织蛋白酶D(EC 3.4.23.5)和高分子量天冬氨酸内肽酶(EC 3.4.23.-)的作用特异性。脑天冬氨酸肽酶表现出相同的底物特异性,可切割RSTP中的Leu10-Leu键以及SP和肽I-III中的Phe-Phe,而不裂解血管紧张素I和II。由于组织蛋白酶D的催化效率更高(Kcat值),组织蛋白酶D催化底物I-III水解的特异性常数(Kcat/Km)远高于高分子量酶的特异性常数。高分子量天冬氨酸肽酶与组织蛋白酶D具有许多共同特性(对胃蛋白酶抑制剂的敏感性、底物特异性、pH活性曲线),并表现出部分免疫同一性;然而,高分子量天冬氨酸肽酶的比活性比组织蛋白酶D低7-10倍。所呈现的模型肽蛋白水解动力学参数表明,高分子量酶可能是单链组织蛋白酶D与另一种多肽的复合物,尽管不能排除它是一种独立天冬氨酸肽酶的可能性。

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