Saravanan Matheshwaran, Bujnicki Janusz M, Cymerman Iwona A, Rao Desirazu N, Nagaraja Valakunja
Microbiology and Cell Biology Department, Indian Institute of Science, Bangalore 560 012, India.
Nucleic Acids Res. 2004 Nov 23;32(20):6129-35. doi: 10.1093/nar/gkh951. Print 2004.
The restriction endonuclease (REase) R.KpnI is an orthodox Type IIP enzyme, which binds to DNA in the absence of metal ions and cleaves the DNA sequence 5'-GGTAC--C-3' in the presence of Mg2+ as shown generating 3' four base overhangs. Bioinformatics analysis reveals that R.KpnI contains a betabetaalpha-Me-finger fold, which is characteristic of many HNH-superfamily endonucleases, including homing endonuclease I-HmuI, structure-specific T4 endonuclease VII, colicin E9, sequence non-specific Serratia nuclease and sequence-specific homing endonuclease I-PpoI. According to our homology model of R.KpnI, D148, H149 and Q175 correspond to the critical D, H and N or H residues of the HNH nucleases. Substitutions of these three conserved residues lead to the loss of the DNA cleavage activity by R.KpnI, confirming their importance. The mutant Q175E fails to bind DNA at the standard conditions, although the DNA binding and cleavage can be rescued at pH 6.0, indicating a role for Q175 in DNA binding and cleavage. Our study provides the first experimental evidence for a Type IIP REase that does not belong to the PD...D/EXK superfamily of nucleases, instead is a member of the HNH superfamily.
限制性内切酶R.KpnI是一种典型的IIP型酶,它在没有金属离子的情况下与DNA结合,并在Mg2+存在时切割DNA序列5'-GGTAC--C-3',产生3'端四个碱基的突出端。生物信息学分析表明,R.KpnI含有ββα-Me-指状折叠结构,这是许多HNH超家族内切酶的特征,包括归巢内切酶I-HmuI、结构特异性T4内切酶VII、大肠杆菌素E9、序列非特异性粘质沙雷氏菌核酸酶和序列特异性归巢内切酶I-PpoI。根据我们构建的R.KpnI同源模型,D148、H149和Q175对应于HNH核酸酶的关键D、H和N或H残基。这三个保守残基的替换导致R.KpnI失去DNA切割活性,证实了它们的重要性。突变体Q175E在标准条件下无法结合DNA,尽管在pH 6.0时可以恢复DNA结合和切割能力,这表明Q175在DNA结合和切割中发挥作用。我们的研究为一种不属于核酸酶PD...D/EXK超家族的IIP型限制性内切酶提供了首个实验证据,相反,它是HNH超家族的成员。