Visser S, Slangen C J, van Rooijen P J
Department of Biophysical Chemistry, Netherlands Institute for Dairy Research, Ede.
Biochem J. 1987 Jun 15;244(3):553-8. doi: 10.1042/bj2440553.
The role of individual amino acid residues in the 98-102 and 111-112 regions of bovine kappa-casein in its interaction with the milk-clotting enzyme chymosin (rennin) was investigated. to this end the tryptic 98-112 fragment of kappa-casein was modified in its N- and/or C-terminal part by chemical (guanidation, ethoxyformylation, repeated Edman degradation) and enzymic (carboxypeptidase) treatments. Further, use was made of short synthetic kappa-casein analogues in which His-102 had been replaced by Pro or Lys. All peptides and their derivatives were tested comparatively at various pH values for their ability to act as chymosin substrates via specific cleavage of the peptide bond at position 105-106. The results indicate that in the alternating 98-102 sequence (His-Pro-His-Pro-His) the His as well as the Pro residues contribute to the substrate activity with no predominant role of any one of these groups. Another interaction site is formed by the Lys residue at position 111 of the substrate. A model of the enzyme-substrate complex is proposed. Herein the 103-108 fragment of the substrate, to be accommodated within the enzyme's active-site cleft, is brought into position by electrostatic binding (via His-98, His-100, His-102 and Lys-111) near the entrance of the cleft. These interactions are strongly supported by Pro residues at positions 99, 101, 109 and 110 of the substrate, which act as stabilizers of the proper conformation of the substrate in the enzyme-substrate complex.
研究了牛乳κ-酪蛋白98 - 102和111 - 112区域中单个氨基酸残基在其与凝乳酶(胃蛋白酶)相互作用中的作用。为此,通过化学(胍化、乙氧基甲酰化、重复的埃德曼降解)和酶促(羧肽酶)处理对κ-酪蛋白的胰蛋白酶98 - 112片段的N端和/或C端部分进行了修饰。此外,还使用了短的合成κ-酪蛋白类似物,其中His - 102被Pro或Lys取代。对所有肽及其衍生物在不同pH值下进行了比较测试,以评估它们通过在105 - 106位特异性切割肽键而作为凝乳酶底物的能力。结果表明,在交替的98 - 102序列(His - Pro - His - Pro - His)中,His以及Pro残基都对底物活性有贡献,这些基团中没有任何一个起主要作用。另一个相互作用位点由底物111位的Lys残基形成。提出了酶 - 底物复合物的模型。在此模型中,底物的103 - 108片段要容纳在酶的活性位点裂隙中,通过静电结合(经由His - 98、His - 100、His - 102和Lys - 111)在裂隙入口附近就位。底物99、101、109和110位的Pro残基强烈支持这些相互作用,它们在酶 - 底物复合物中作为底物正确构象的稳定剂。