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EcoRI核酸内切酶。纯酶的物理性质和催化特性。

EcoRI endonuclease. Physical and catalytic properties of the homogenous enzyme.

作者信息

Modrich P, Zabel D

出版信息

J Biol Chem. 1976 Oct 10;251(19):5866-74.

PMID:786985
Abstract

A procedure for large scale isolation of Escherichia coli RI endonuclease in high yield has been developed. The purified enzyme is homogeneous as judged by polyacrylamide gel electrophoresis and analytical sedimentation. The denatured and reduced form of the enzyme has a molecular weight of 28,500 +/- 500. In solution the enzyme exists as a mixture of dimers and tetramers of molecular weights 57,000 and 114,000, respectively. We estimate the dissociation constant for tetramer to dimer transition to be less than or approximately equal to 1 x 10-7 M. Steady state kinetic analysis of the endonuclease with ColE1 DNA as substrate showed that the enzyme obeys Michaelis-Menten kinetics. At 37 degrees the turnover number is four double strand scissons per min, and the Km for ColE1 molecules is 8 x 10(-9) M. At 0 degrees the major product of endonuclease action contains only one single strand break in the RI site, and such molecules can dissociate from the enzyme. In contrast, at 30 degrees to 37 degrees, two single strand breaks are introduced into the RI sequence prior to dissociation of the enzyme. A transient enzyme-bound intermediate containing only one break in the RI site was observed in studies of a single turnover at 30 degrees. Kinetic analysis of this reaction indicates that the first break is introduced into the RI site with the first order rate constant of at least 40 min-1, while the second cleavage occurs with a rate constant of 14 min-1. Since the turnover number of the enzyme at 30 degress is only 0.72 min-1, these results indicate that the rate-limiting step is release of endonuclear from its DNA product.

摘要

已开发出一种以高产率大规模分离大肠杆菌RI内切核酸酶的方法。通过聚丙烯酰胺凝胶电泳和分析性沉降判断,纯化后的酶是均一的。该酶的变性还原形式分子量为28,500±500。在溶液中,该酶以分子量分别为57,000和114,000的二聚体和四聚体混合物形式存在。我们估计四聚体向二聚体转变的解离常数小于或约等于1×10⁻⁷M。以ColE1 DNA为底物对该内切核酸酶进行稳态动力学分析表明,该酶符合米氏动力学。在37℃时,转换数为每分钟4次双链切割,ColE1分子的Km为8×10⁻⁹M。在0℃时,内切核酸酶作用的主要产物在RI位点仅含有一个单链断裂,并且这样的分子可以从酶上解离。相比之下,在30℃至37℃时,在酶解离之前,RI序列中会引入两个单链断裂。在30℃的单周转研究中观察到一种在RI位点仅含有一个断裂的短暂酶结合中间体。该反应的动力学分析表明,第一个断裂以至少40 min⁻¹的一级速率常数引入RI位点,而第二次切割以14 min⁻¹的速率常数发生。由于该酶在30℃时的转换数仅为0.72 min⁻¹,这些结果表明限速步骤是内切核酸酶从其DNA产物上的释放。

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