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脑内肽酶的分离:与缓激肽结构相关的底物大小和序列的影响。

Isolation of brain endopeptidases: influence of size and sequence of substrates structurally related to bradykinin.

作者信息

Oliveira E B, Martins A R, Camargo A C

出版信息

Biochemistry. 1976 May 4;15(9):1967-74. doi: 10.1021/bi00654a026.

Abstract

Two thiol-activated endopeptidases with pH optima near pH 7.5 were isolated from the supernatant fraction of rabbit brain homogenates by DEAE-cellulose chromatography, gel filtration and isoelectrofocusing. Peptide bond hydrolysis was measured quantitatively by ion-exchange chromatography with an amino acid analyzer. Brain kininase A hydrolyzes the Phe5-Ser6 peptide bond in bradykinin (Bk), Arg1-Pro2-Pro3-Gly4-Phe5-Ser6-Pro7-Phe8-Arg9. It is isoelectric near pH 5.2 and has a molecular weight of approximately 71 000. The enzyme also hydrolyzes the Phe-Ser peptide bond in Lys-Bk, Met-Lys-Bk, des-Arg1-Bk, Lys9-Bk, Pro-Gly-Phe-Ser-Pro-Phe-Arg, and Gly-Pro-Phe-Ser-Pro-Phe-Arg, but does not hydrolyze (0.1%) this bond in des-Phe8-Arg9-Bk. Brain kininase B hydrolyzes the Pro7-Phe8 peptide bond in Bk. It is isoelectric at pH 4.9 and has a molecular weight of approximately 68 000. Brain kininase B also hydrolyzes the Pro-Phe bond in Lys-Bk, Met-Lys-Bk, Lys9-Bk, Ser-Pro-Phe-Arg, and Phe-Ser-Pro-Arg. Pretreatment of denatured kininogen with brain kininase A or B did not reduce the amount of trypsin-releasable Bk from this precursor protein, indicating that the Bk sequence, when part of a large protein, is not a substrate for either enzyme. However, kininase A and B hydrolyze the octadecapeptide Gly-Leu-Met-Lys-Arg-Pro-Pro-Gly-Phe-Ser-Pro-Phe-Arg-Ser-Val-Gin-Val. The data show that a large part of the C-terminal portion of bradykinin is important for the brain kininase A activity and, for both enzymes, the size of the peptide and presumably the residues adjacent to the scissle bond are important in determining the rate of peptide bond hydrolysis by these endopeptidases.

摘要

通过DEAE - 纤维素色谱法、凝胶过滤法和等电聚焦法,从兔脑匀浆的上清液部分分离出两种巯基激活的内肽酶,其最适pH接近7.5。使用氨基酸分析仪通过离子交换色谱法定量测定肽键水解情况。脑激肽酶A水解缓激肽(Bk)中的Phe5 - Ser6肽键,即Arg1 - Pro2 - Pro3 - Gly4 - Phe5 - Ser6 - Pro7 - Phe8 - Arg9。其等电点接近pH 5.2,分子量约为71000。该酶还能水解Lys - Bk、Met - Lys - Bk、des - Arg1 - Bk、Lys9 - Bk、Pro - Gly - Phe - Ser - Pro - Phe - Arg和Gly - Pro - Phe - Ser - Pro - Phe - Arg中的Phe - Ser肽键,但在des - Phe8 - Arg9 - Bk中不水解(0.1%)此键。脑激肽酶B水解Bk中的Pro7 - Phe8肽键。其等电点为pH 4.9,分子量约为68000。脑激肽酶B还能水解Lys - Bk、Met - Lys - Bk、Lys9 - Bk、Ser - Pro - Phe - Arg和Phe - Ser - Pro - Arg中的Pro - Phe键。用脑激肽酶A或B对变性激肽原进行预处理,并不会减少该前体蛋白中胰蛋白酶可释放的Bk量,这表明当Bk序列作为大蛋白的一部分时,它不是这两种酶的底物。然而,激肽酶A和B能水解十八肽Gly - Leu - Met - Lys - Arg - Pro - Pro - Gly - Phe - Ser - Pro - Phe - Arg - Ser - Val - Gin - Val。数据表明,缓激肽C末端部分的很大一部分对脑激肽酶A的活性很重要,而且对于这两种酶来说,肽的大小以及可能与裂解键相邻的残基对于确定这些内肽酶水解肽键的速率很重要。

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