Deddish P A, Skidgel R A, Erdös E G
Laboratory of Peptide Research, University of Illinois, Chicago College of Medicine 60612.
Biochem J. 1989 Jul 1;261(1):289-91. doi: 10.1042/bj2610289.
Carboxypeptidases H and M differ in their distribution and other properties, but both are activated by Co2+ and inhibited by guanidinoethylmercaptosuccinic acid. The higher degree of activation or inhibition of carboxypeptidase H by these agents at acid pH has been employed to identify this enzyme in tissues. We found that the activation or inhibition of both purified and plasma-membrane-bound human carboxy-peptidase M depends on the pH of the medium. CoCl2 activated over 6-fold at pH 5.5, but less than 2-fold at pH 7.5. Guanidinoethylmercaptosuccinic acid inhibited the membrane-bound carboxypeptidase M more effectively than the purified enzyme, and the IC50 was about 25-30 times lower at pH 5.5. As purified human plasma carboxypeptidase N and pancreatic carboxypeptidase B were also activated more at pH 5.5, we conclude that the increased activation by CoCl2 is due to the enhanced dissociation of Zn2+ below the pKa of the ligands that co-ordinate the cofactor in the protein. Thus increased activation or inhibition at acid pH would not differentiate basic carboxypeptidases.
羧肽酶H和羧肽酶M在分布及其他特性上存在差异,但二者均被Co2+激活,被胍基乙硫基琥珀酸抑制。利用这些试剂在酸性pH条件下对羧肽酶H的激活或抑制程度更高这一特性,已被用于在组织中鉴定该酶。我们发现,纯化的以及与质膜结合的人羧肽酶M的激活或抑制均取决于培养基的pH值。CoCl2在pH 5.5时激活超过6倍,但在pH 7.5时激活不到2倍。胍基乙硫基琥珀酸对与膜结合的羧肽酶M的抑制作用比对纯化酶更有效,且在pH 5.5时IC50约低25 - 30倍。由于纯化的人血浆羧肽酶N和胰羧肽酶B在pH 5.5时也有更强的激活作用,我们得出结论,CoCl2激活作用增强是由于在低于与蛋白质中辅因子配位的配体的pKa时,Zn2+的解离增强。因此,在酸性pH条件下激活或抑制作用增强并不能区分碱性羧肽酶。