Pohl J, Dunn B M
Department of Biochemistry and Molecular Biology, College of Medicine, University of Florida, Gainesville 32610.
Biochemistry. 1988 Jun 28;27(13):4827-34. doi: 10.1021/bi00413a037.
The possibility that pig pepsin has a cation binding specificity in its secondary binding subsites has been examined by the pepsin-catalyzed hydrolysis of a series of synthetic octa- to undecapeptide substrates. These chromophoric substrates are cleaved by pepsin in the phenylalanyl-p-nitrophenylalanyl (Phe-Nph) bond. Lys and Arg residues were placed into seven different positions in the substrates, and their effect on kcat and Km was examined between pH 2.8 and pH 5.8 (I = 0.1 M, 37 degrees C). Kinetic evidence indicates the existence in the enzyme binding subsites S4, S3, S2, S3', S4', and S5' of a group(s) which become(s) negatively charged at higher pH. For most substrates, the magnitude as well as the pH dependence of kcat was unaffected by the presence of Lys or Arg in these peptides. In contrast, changes up to 5 orders of magnitude were observed for Km, depending on the number of basic residues and on their positions in the sequence. Km for a group of substrates at pH greater than 5.5 was lower than 50 nM. Values for kcat/Km for some substrates exceed the level of 10(8) M-1 s-1. Therefore, the free energy derived from ionic interactions in secondary binding sites influences mostly the binding step on the reaction pathway. This result is in contrast to the previous observations that the length and the hydrophobic character of the substrate residues in some positions influence kcat with little effect on Km toward shorter substrates of pepsin [Fruton, J. (1976) Adv. Enzymol. Relat. Areas Mol. Biol. 44, 1-36].
通过胃蛋白酶催化一系列合成的八肽至十一肽底物的水解反应,研究了猪胃蛋白酶在其二级结合亚位点具有阳离子结合特异性的可能性。这些发色底物在苯丙氨酰 - 对硝基苯丙氨酰(Phe - Nph)键处被胃蛋白酶切割。将赖氨酸(Lys)和精氨酸(Arg)残基置于底物的七个不同位置,并在pH 2.8至pH 5.8(I = 0.1 M,37℃)之间检测它们对kcat和Km的影响。动力学证据表明,在酶结合亚位点S4、S3、S2、S3'、S4'和S5'中存在一组在较高pH下带负电荷的基团。对于大多数底物,这些肽中赖氨酸或精氨酸的存在对kcat的大小以及pH依赖性没有影响。相反,观察到Km变化高达5个数量级,这取决于碱性残基的数量及其在序列中的位置。一组底物在pH大于5.5时的Km低于50 nM。一些底物的kcat/Km值超过10(8) M-1 s-1的水平。因此,二级结合位点中离子相互作用产生的自由能主要影响反应途径中的结合步骤。这一结果与先前的观察结果相反,即某些位置底物残基 的长度和疏水特性对kcat有影响,而对胃蛋白酶较短底物的Km影响较小[弗鲁顿,J.(1976年)《酶学进展及相关分子生物学领域》44,1 - 36]。