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羧肽酶Y作为唯一催化位点的质子传递系统:组氨酸397诱变取代的研究

Proton-relay system of carboxypeptidase Y as a sole catalytic site: studies on mutagenic replacement of his 397.

作者信息

Jung G, Ueno H, Hayashi R

机构信息

Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University, Sakyo-ku, Kyoto, 606-8502, Japan.

出版信息

J Biochem. 1998 Aug;124(2):446-50. doi: 10.1093/oxfordjournals.jbchem.a022133.

Abstract

His397 was replaced with alanine by site-directed mutagenesis of the cloned PRC1 gene in order to confirm the role of this residue in the proton-relay system of carboxypeptidase Y (CPY). The expressed and purified H397A showed a CD spectrum almost identical to that of the wild type enzyme, but its heat stability and conformation on heating differed somewhat. Kinetic analysis showed that the kcat values of the purified H397A toward the peptide substrates, Z-Phe-Leu and Z-Gly-Phe, were reduced to approximately 4 x 10(-5)-fold, whereas the Km values remained almost unchanged. The activity of the H397A preparation with the ester substrate, Ac-Phe-OEt, was negligible. The low activity of our H397A was lost on treatment with DFP and Z-Phe-CH2Cl, site-specific inhibitors, respectively, for Ser146 and His397, and with the HgCl2 and PCMB, SH-reagents for Cys341. After treatment with these inhibitors, the kcat value for the H397A preparation toward Z-Phe-Leu decreased 1 x 10(3)-fold or more. The value was approximately 10(-8) for the wild type enzyme. This level of activity is 10(3)-fold lower than the reported value for the same mutant of CPY [Carlsberg Res. Commun. 54, 165-171 (1989)], and more than 10-fold lower than the values for the corresponding His-to-Ala mutants of trypsin [J. Am. Chem. Soc. 114, 1784-1790 (1992)] and subtilisin [Nature 332, 564-568 (1988)]. These findings, together with the pH profiles and chromatographic behavior, are evidence that the low activity of the H397A preparation is due to contamination by wild type CPY. The decreased kcat value of our H397A mutant is the lowest reported among the corresponding histidine mutants of serine proteases. We conclude that the proton-relay system composed of Ser146 and His397 is the sole catalytic center of CPY, and that its destruction leads to complete inactivation.

摘要

通过对克隆的PRC1基因进行定点诱变,将His397替换为丙氨酸,以确认该残基在羧肽酶Y(CPY)质子传递系统中的作用。表达并纯化的H397A的圆二色谱与野生型酶几乎相同,但其热稳定性和加热时的构象略有不同。动力学分析表明,纯化的H397A对肽底物Z-Phe-Leu和Z-Gly-Phe的kcat值降低至约4×10⁻⁵倍,而Km值几乎保持不变。H397A制剂对酯底物Ac-Phe-OEt的活性可忽略不计。我们的H397A的低活性在用DFP和Z-Phe-CH₂Cl(分别为Ser146和His397的位点特异性抑制剂)以及HgCl₂和PCMB(Cys341的巯基试剂)处理后丧失。用这些抑制剂处理后,H397A制剂对Z-Phe-Leu的kcat值降低了1×10³倍或更多。野生型酶的值约为10⁻⁸。该活性水平比报道的CPY相同突变体的值低10³倍[《嘉士伯研究通讯》54, 165 - 171 (1989)],比胰蛋白酶[《美国化学会志》114, 1784 - 1790 (1992)]和枯草杆菌蛋白酶[《自然》332, 564 - 568 (1988)]相应的His-to-Ala突变体的值低10倍以上。这些发现,连同pH曲线和色谱行为,证明H397A制剂的低活性是由于野生型CPY的污染。我们的H397A突变体降低的kcat值是丝氨酸蛋白酶相应组氨酸突变体中报道的最低值。我们得出结论,由Ser146和His397组成的质子传递系统是CPY的唯一催化中心,其破坏导致完全失活。

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