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通过化学拯救探究牛胰脱氧核糖核酸酶I的催化机制。

Probing the catalytic mechanism of bovine pancreatic deoxyribonuclease I by chemical rescue.

作者信息

Chen Wei-Jung, Lai Pei-Jun, Lai Yu-Shen, Huang Po-Tsang, Lin Chai-Ching, Liao Ta-Hsiu

机构信息

Institute of Biotechnology, College of Bioresources, National Ilan University, Ilan 26047, Taiwan.

出版信息

Biochem Biophys Res Commun. 2007 Jan 19;352(3):689-96. doi: 10.1016/j.bbrc.2006.11.078. Epub 2006 Nov 27.

Abstract

Previous structural and mutational studies of bovine pancreatic deoxyribonuclease I (bpDNase I) have demonstrated that the active site His134 and His252 played critical roles in catalysis. In our present study, mutations of these two His residues to Gln, Ala or Gly reduced the DNase activity by a factor of four to five orders of magnitude. When imidazole or primary amines were added exogenously to the Ala or Gly mutants, the residual DNase activities were substantially increased by 60-120-fold. The rescue with imidazole was pH- and concentration-dependent. The pH-activity profiles showed nearly bell-shaped curves, with the maximum activity enhancement for H134A at pH 6.0 and that for H252A at pH 7.5. These findings indicated that the protonated form of imidazole was responsible for the rescue in H134A, and the unprotonated form was for that in H252A, prompting us to assign unambiguously the roles for His134 as a general acid, and His252 as a general base, in bpDNase I catalysis.

摘要

先前对牛胰脱氧核糖核酸酶I(bpDNase I)的结构和突变研究表明,活性位点的组氨酸134(His134)和组氨酸252(His252)在催化过程中起关键作用。在我们目前的研究中,将这两个组氨酸残基突变为谷氨酰胺、丙氨酸或甘氨酸后,脱氧核糖核酸酶活性降低了4至5个数量级。当向外源添加咪唑或伯胺到丙氨酸或甘氨酸突变体中时,残余的脱氧核糖核酸酶活性显著增加了60至120倍。用咪唑进行的挽救作用具有pH和浓度依赖性。pH-活性曲线显示出近似钟形的曲线,H134A在pH 6.0时活性增强最大,H252A在pH 7.5时活性增强最大。这些发现表明,咪唑的质子化形式负责H134A中的挽救作用,未质子化形式负责H252A中的挽救作用,这促使我们明确确定His134在bpDNase I催化中作为广义酸,His252作为广义碱的作用。

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