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HhaII限制性内切核酸酶的催化特性

Catalytic properties of the HhaII restriction endonuclease.

作者信息

Kaddurah-Daouk R, Cho P, Smith H O

出版信息

J Biol Chem. 1985 Dec 5;260(28):15345-51.

PMID:2999112
Abstract

The catalytic properties of the HhaII restriction endonuclease were studied using plasmid pSK11 DNA containing a single 5'-G-A-N-T-C HhaII cleavage site as substrate. Reactions were followed by two methods: 1) gel electrophoretic analysis of nicked circular and linear DNA products, or 2) release of 32P-labeled inorganic phosphate from specifically labeled HhaII sites in a reaction coupled with bacterial alkaline phosphatase. The enzyme is optimally active at 37 degrees C in 10 mM Tris-HCl (pH 9.1) and 4-10 mM MgCl2 without added NaCl. Activity is stabilized by the presence of 2-mercaptoethanol and 0.2% Triton X-100 or 50 microgram/ml bovine serum albumin. At enzyme concentrations below 10 nM and using pSK11 as substrate, initial kinetic rates were dependent on the order of mixing of reactants. A lag of 3-4 min was observed if enzyme or substrate was added last. Preincubation of substrate and enzyme followed by initiation of the reaction with MgCl2 or preincubation of the enzyme with nonspecific DNA followed by initiation with substrate eliminated or reduced the lag, respectively, and speeded up the reactions. Under a wide range of reaction conditions, nicked pSK11 DNA accumulated early, while linear molecules appeared later, suggesting that HhaII cleaves one strand at a time in separate binding events. The apparent Km for covalently closed pSK11 DNA molecules was approximately 17 nM, and the turnover number for the conversion of covalent to nicked sites was 1.1 single strand scissions/min. Pre-steady state kinetic analysis indicated that cleavage of the first phosphodiester bond in a site is first order with a rate constant of about 0.8 min-1, while cleavage of the second phosphodiester bond is first order with a rate constant of about 0.2 min-1.

摘要

使用含有单个5'-G-A-N-T-C HhaII切割位点的质粒pSK11 DNA作为底物,研究了HhaII限制性内切核酸酶的催化特性。反应通过两种方法进行跟踪:1)对带切口的环状和线性DNA产物进行凝胶电泳分析,或2)在与细菌碱性磷酸酶偶联的反应中,从特异性标记的HhaII位点释放32P标记的无机磷酸盐。该酶在37℃、10 mM Tris-HCl(pH 9.1)和4-10 mM MgCl2中,无添加NaCl时具有最佳活性。2-巯基乙醇、0.2% Triton X-100或50微克/毫升牛血清白蛋白的存在可稳定其活性。在酶浓度低于10 nM且使用pSK11作为底物时,初始动力学速率取决于反应物混合的顺序。如果最后添加酶或底物,则会观察到3-4分钟的延迟。底物和酶预孵育,然后用MgCl2启动反应,或者酶与非特异性DNA预孵育,然后用底物启动反应,分别消除或减少了延迟,并加快了反应速度。在广泛的反应条件下,带切口的pSK11 DNA早期积累,而线性分子随后出现,这表明HhaII在单独的结合事件中一次切割一条链。共价闭合的pSK11 DNA分子的表观Km约为17 nM,共价位点转化为带切口位点的周转数为1.1次单链切割/分钟。预稳态动力学分析表明,位点中第一个磷酸二酯键的切割是一级反应,速率常数约为0.8分钟-1,而第二个磷酸二酯键的切割是一级反应,速率常数约为0.2分钟-1。

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