Saravanan Matheshwaran, Vasu Kommireddy, Kanakaraj Radhakrishnan, Rao Desirazu N, Nagaraja Valakunja
Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore 560 012, India.
Nucleic Acids Res. 2007;35(8):2777-86. doi: 10.1093/nar/gkm114. Epub 2007 Apr 11.
KpnI REase recognizes palindromic sequence, GGTACC, and forms complex in the absence of divalent metal ions, but requires the ions for DNA cleavage. Unlike most other REases, R.KpnI shows promiscuous DNA cleavage in the presence of Mg2+. Surprisingly, Ca2+ suppresses the Mg2+-mediated promiscuous activity and induces high fidelity cleavage. To further analyze these unique features of the enzyme, we have carried out DNA binding and kinetic analysis. The metal ions which exhibit disparate pattern of DNA cleavage have no role in DNA recognition. The enzyme binds to both canonical and non-canonical DNA with comparable affinity irrespective of the metal ions used. Further, Ca2+-imparted exquisite specificity of the enzyme is at the level of DNA cleavage and not at the binding step. With the canonical oligonucleotides, the cleavage rate of the enzyme was comparable for both Mg2+- and Mn2+-mediated reactions and was about three times slower with Ca2+. The enzyme discriminates non-canonical sequences poorly from the canonical sequence in Mg2+-mediated reactions unlike any other Type II REases, accounting for the promiscuous behavior. R.KpnI, thus displays properties akin to that of typical Type II REases and also endonucleases with degenerate specificity in its DNA recognition and cleavage properties.
KpnI 限制酶识别回文序列 GGTACC,在没有二价金属离子的情况下形成复合物,但 DNA 切割需要这些离子。与大多数其他限制酶不同,R.KpnI 在 Mg2+ 存在下表现出随意的 DNA 切割。令人惊讶的是,Ca2+ 抑制了 Mg2+ 介导的随意活性并诱导高保真切割。为了进一步分析该酶的这些独特特性,我们进行了 DNA 结合和动力学分析。表现出不同 DNA 切割模式的金属离子在 DNA 识别中不起作用。无论使用何种金属离子,该酶都以相当的亲和力与典型和非典型 DNA 结合。此外,Ca2+ 赋予酶的精确特异性是在 DNA 切割水平,而不是在结合步骤。对于典型的寡核苷酸,该酶在 Mg2+ 和 Mn2+ 介导的反应中的切割速率相当,而在 Ca2+ 存在下则慢约三倍。与任何其他 II 型限制酶不同,该酶在 Mg2+ 介导的反应中很难区分非典型序列和典型序列,这解释了其随意的行为。因此,R.KpnI 在其 DNA 识别和切割特性中表现出类似于典型 II 型限制酶的特性,以及具有简并特异性的核酸内切酶的特性。