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SepMI 和 EhoI 限制内切酶切割 DNA 的金属离子依赖性。

Metal ion dependence of DNA cleavage by SepMI and EhoI restriction endonucleases.

机构信息

Laboratoire de Biochimie et de Biologie Moléculaire, Faculté des Sciences, Université Hassan II-Ain Chock - Casablanca, km 8, route d'El Jadida BP. 5366, Casablanca, Morocco.

出版信息

Microbiol Res. 2013 Feb 22;168(2):99-105. doi: 10.1016/j.micres.2012.08.003. Epub 2012 Sep 25.

Abstract

Most of type II restriction endonucleases show an absolute requirement for divalent metal ions as cofactors for DNA cleavage. While Mg(2+) is the natural cofactor other metal ions can substitute it and mediate the catalysis, however Ca(2+) (alone) only supports DNA binding. To investigate the role of Mg(2+) in DNA cleavage by restriction endonucleases, we have studied the Mg(2+) and Mn(2+) concentration dependence of DNA cleavage by SepMI and EhoI. Digestion reactions were carried out at different Mg(2+) and Mn(2+) concentrations at constant ionic strength. These enzymes showed different behavior regarding the ions requirement, SepMI reached near maximal level of activity between 10 and 20mM while no activity was detected in the presence of Mn(2+) and in the presence of Ca(2+) cleavage activity was significantly decreased. However, EhoI was more highly active in the presence of Mn(2+) than in the presence of Mg(2+) and can be activated by Ca(2+). Our results propose the two-metal ion mechanism for EhoI and the one-metal ion mechanism for SepMI restriction endonuclease. The analysis of the kinetic parameters under steady state conditions showed that SepMI had a K(m) value for pTrcHisB DNA of 6.15 nM and a V(max) of 1.79×10(-2)nM min(-1), while EhoI had a K(m) for pUC19 plasmid of 8.66 nM and a V(max) of 2×10(-2)nM min(-1).

摘要

大多数 II 型限制内切酶表现出对二价金属离子作为 DNA 切割辅助因子的绝对要求。虽然 Mg2+是天然辅助因子,但其他金属离子可以替代它并介导催化,然而 Ca2+(单独)仅支持 DNA 结合。为了研究 Mg2+在限制内切酶切割 DNA 中的作用,我们研究了 SepMI 和 EhoI 切割 DNA 时 Mg2+和 Mn2+浓度的依赖性。在恒定离子强度下,在不同的 Mg2+和 Mn2+浓度下进行消化反应。这些酶对离子的需求表现出不同的行为,SepMI 在 10 到 20mM 之间达到接近最大的活性水平,而在 Mn2+存在下没有检测到活性,并且在 Ca2+存在下切割活性显著降低。然而,EhoI 在 Mn2+存在下比在 Mg2+存在下更具活性,并且可以被 Ca2+激活。我们的结果提出了 EhoI 的双金属离子机制和 SepMI 限制内切酶的单金属离子机制。在稳态条件下分析动力学参数表明,SepMI 对 pTrcHisB DNA 的 K(m)值为 6.15 nM,V(max)值为 1.79×10(-2)nM min(-1),而 EhoI 对 pUC19 质粒的 K(m)值为 8.66 nM,V(max)值为 2×10(-2)nM min(-1)。

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