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大鼠肠黏膜刷状缘四种肽水解酶的分离与鉴定

Isolation and characterization of four peptide hydrolases from the brush border of rat intestinal mucosa.

作者信息

Shoaf C R, Berko R M, Heizer W D

出版信息

Biochim Biophys Acta. 1976 Oct 11;445(3):694-719. doi: 10.1016/0005-2744(76)90121-2.

Abstract

Peptide hydrolases (EC 3.4.-.-) were solubilized from purified brush borders of rat intestinal mucosa by papain digestion. Three peptide hydrolases, I, II, and III, with different substrate specificities were isolated by means of DEAE-cellulose chromatography and preparative acrylamide gel electrophoresis. On repeat preparative acrylamide gel electrophoresis under slightly different conditions, enzyme II was resolved into two proteins, IIa and IIb, with vary similar, possibly identical, substrate specificities. Efforts to discover additional brush border peptide hydrolases revealed none. Studies using more than 50 substrates showed that enzyme I was most active against Met-Met, Met-Ala, and Met-Phe while enzyme II was most active against Phe-Gly, Phe-Ser, and Leu-Gly-Gly, and enzyme III most rapidly hydrolyzed Gly-Leu, Leu-Gly, and Met-Gly. Efforts to discover substrates which are highly discriminating for each enzyme were partly successful. Thus, a number of substrates including leucine amide, leucyl-beta-naphthylamide and Phe-Asp were hydrolyzed almost exclusively (95% or more) by enzyme II while Gly-Leu was similarly specific for enzyme III. No substrate highly discriminating for enzyme I was discovered. Ion-exchange chromatography resulted in increases in specific activity of 10- and 120-fold for enzymes II and III, respectively. By sequential use of ion-exchange chromatography and preparative acrylamide gel electrophoresis, each of the three enzymes was partially purified to the point that they were free of contaminating disaccharidases and enzymes I and II gave single dense bands on analytical acrylamide gel electrophoresis while enzyme III gave a single dense band plus one additional faint protein band. Under appropriate conditions, analytical gel electrophoresis also resolved enzyme II into two bands with enzyme activity. The three enzymes were isolated from intestinal brush borders of germ-free rats indicating that none of the enzymes is of bacterial origin. With Phe-Gly as substrate, pH optima for enzymes I, II, and III were 8.0, 8.0, and 8.5, respectively. Molecular weights determined by gel filtration were 283 000, 284 000, and 134 000, respectively. Studies of activation by metal ions and inhibition by metal ion chelators suggested that the activity of each of the enzymes is dependent on a relatively tightly bound metal cofactor. Peptide hydrolases of the intestinal mucosa play an essential role in protein digestion. The studies presented here help to clarify the total number and substrate specificities of these enzymes in the rat brush border.

摘要

通过木瓜蛋白酶消化从大鼠肠黏膜纯化的刷状缘中溶解出肽水解酶(EC 3.4.-.-)。借助DEAE - 纤维素色谱法和制备性丙烯酰胺凝胶电泳分离出三种具有不同底物特异性的肽水解酶,即酶I、酶II和酶III。在略有不同的条件下重复进行制备性丙烯酰胺凝胶电泳时,酶II被分解为两种蛋白质,IIa和IIb,它们具有非常相似、可能相同的底物特异性。未发现其他刷状缘肽水解酶。使用50多种底物的研究表明,酶I对Met - Met、Met - Ala和Met - Phe的活性最高,而酶II对Phe - Gly、Phe - Ser和Leu - Gly - Gly的活性最高,酶III最快速地水解Gly - Leu、Leu - Gly和Met - Gly。寻找对每种酶具有高度区分性的底物的努力部分取得了成功。因此,包括亮氨酸酰胺、亮氨酰 - β - 萘酰胺和Phe - Asp在内的许多底物几乎仅由酶II水解(95%或更多),而Gly - Leu对酶III具有类似的特异性。未发现对酶I具有高度区分性的底物。离子交换色谱法分别使酶II和酶III的比活性提高了10倍和120倍。通过依次使用离子交换色谱法和制备性丙烯酰胺凝胶电泳,三种酶中的每一种都被部分纯化至不含污染性双糖酶的程度,并且酶I和酶II在分析性丙烯酰胺凝胶电泳上给出单一的致密条带,而酶III给出一条单一的致密条带加一条额外的 faint 蛋白条带。在适当条件下,分析性凝胶电泳也将酶II分解为两条具有酶活性的条带。这三种酶是从无菌大鼠的肠刷状缘中分离出来的,表明这些酶都不是细菌来源。以Phe - Gly为底物时,酶I、酶II和酶III的最适pH分别为8.0、8.0和8.5。通过凝胶过滤测定的分子量分别为283000、284000和134000。对金属离子激活和金属离子螯合剂抑制的研究表明,每种酶的活性都依赖于一种结合相对紧密的金属辅因子。肠黏膜肽水解酶在蛋白质消化中起重要作用。本文所呈现的研究有助于阐明大鼠刷状缘中这些酶的确切数量和底物特异性。

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