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α-乳白蛋白的蛋白水解消化:生理意义

Proteolytic digestion of alpha-lactalbumin: physiological implications.

作者信息

Hirai Y, Permyakov E A, Berliner L J

机构信息

Department of Chemistry, Ohio State University, Columbus 43210.

出版信息

J Protein Chem. 1992 Feb;11(1):51-7. doi: 10.1007/BF01025092.

Abstract

The kinetics of the partial digestion of bovine alpha-lactalbumin (alpha-LA) by trypsin, alpha-chymotrypsin, and pepsin was monitored by lactose synthase activity, HPLC, and difference spectrophotometry. The relative stabilities of the various metal-bound states of alpha-LA to trypsin and chymotrypsin at 37 and 5 degrees C decrease in the following order: Ca(II)-alpha-LA greater than Zn(II), Ca(II)-alpha-LA greater than apo-alpha-LA. The HPLC digestion patterns of Ca(II)-alpha-LA and Zn(II), Ca(II)-alpha-LA at 5 and 37 degrees C were similar, while the corresponding digestion patterns for apo-alpha-LA were quite different, reflecting the existence of the thermally induced denaturation states of apo-alpha-LA within this temperature region. Occupation of the first Zn(II)-binding site in Ca(II)-loaded alpha-LA slightly alters the HPLC digestion patterns at both temperatures and accelerates the digestion at 37 degrees C due to Zn(II)-induced shift of the thermal transition of alpha-LA, exposing some portion of thermally denatured protein. The results suggest that the binding of Zn(II) to the first Zn(II)- (or Cu(II)-specific site does not cause any drastic changes in the overall structure of alpha-LA. The acidic form of alpha-LA (at pH 2.2 and 37 degrees C) was digested by pepsin at rates similar to that for the apo- or Cu(II), Ca(II)-loaded forms by trypsin or alpha-chymotrypsin at neutral pH. Complexation of alpha-LA with bis-ANS affords protection against pepsin cleavage. It is suggested that the protective effects of similar small lipophilic compounds to alpha-LA may have physiological significance (e.g., for nutritional transport).

摘要

通过乳糖合酶活性、高效液相色谱(HPLC)和差示分光光度法监测了胰蛋白酶、α-糜蛋白酶和胃蛋白酶对牛α-乳白蛋白(α-LA)部分消化的动力学过程。在37℃和5℃下,α-LA各种金属结合态对胰蛋白酶和糜蛋白酶的相对稳定性按以下顺序降低:Ca(II)-α-LA>Zn(II),Ca(II)-α-LA>脱辅基-α-LA。Ca(II)-α-LA和Zn(II)、Ca(II)-α-LA在5℃和37℃下的HPLC消化模式相似,而脱辅基-α-LA的相应消化模式则有很大不同,这反映了在此温度范围内脱辅基-α-LA存在热诱导变性状态。在Ca(II)负载的α-LA中占据第一个Zn(II)结合位点会在两个温度下略微改变HPLC消化模式,并由于Zn(II)诱导的α-LA热转变位移而加速37℃下的消化,使部分热变性蛋白暴露出来。结果表明,Zn(II)与第一个Zn(II)-(或Cu(II)-特异性位点)的结合不会导致α-LA整体结构发生任何剧烈变化。α-LA的酸性形式(在pH 2.2和37℃下)被胃蛋白酶消化的速率与脱辅基或Cu(II)、Ca(II)负载形式在中性pH下被胰蛋白酶或α-糜蛋白酶消化的速率相似。α-LA与双-ANS的络合提供了对胃蛋白酶切割的保护作用。有人提出,类似的小亲脂性化合物对α-LA的保护作用可能具有生理意义(例如,对于营养物质运输)。

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