Fang Xiaoting, Jiang YongLiang, Li Kim, Zeng Qinglu
Department of Ocean Science, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.
2School of Life Sciences, University of Science and Technology of China, Hefei, 230027 Anhui China.
Mob DNA. 2018 Aug 9;9:27. doi: 10.1186/s13100-018-0132-5. eCollection 2018.
There are six known families of homing endonucleases, LAGLIDADG, GIY-YIG, HNH, His-Cys box, PD-(D/E)-XK, and EDxHD, which are characterized by their conserved residues. Previously, we discovered a novel homing endonuclease F-CphI encoded by ORF177 of cyanophage S-PM2. F-CphI does not resemble any characterized homing endonucleases. Instead, the C-terminus of F-CphI aligns well with the N-terminal catalytic domain of a Holliday junction DNA resolvase, phage T4 endonuclease VII (Endo VII).
A PSI-BLAST search resulted in a total of 313 Endo VII motif-containing sequences in sequenced genomes. Multiple sequence alignment showed that the catalytically important residues of T4 Endo VII were all well conserved in these proteins. Our site-directed mutagenesis studies further confirmed that the catalytically important residues of T4 Endo VII were also essential for F-CphI activity, and thus F-CphI might use a similar protein fold as Endo VII for DNA cleavage. A phylogenetic tree of the Endo VII motif-containing sequences showed that putative resolvases grouped into one clade while putative homing endonucleases and restriction endonucleases grouped into another clade.
Based on the unique conserved residues, we proposed that F-CphI represents a new homing endonuclease family, which was named the DHHRN family. Our phylogenetic analysis could be used to predict the functions of many previously unknown proteins.
已知有六个归巢内切核酸酶家族,即LAGLIDADG、GIY - YIG、HNH、His - Cys盒、PD - (D/E) - XK和EDxHD,它们以保守残基为特征。此前,我们发现了一种由蓝噬菌体S - PM2的ORF177编码的新型归巢内切核酸酶F - CphI。F - CphI与任何已鉴定的归巢内切核酸酶都不相似。相反,F - CphI的C末端与霍利迪连接体DNA解离酶噬菌体T4内切核酸酶VII(Endo VII)的N末端催化结构域具有良好的序列比对。
PSI - BLAST搜索在已测序基因组中总共得到313个含有Endo VII基序的序列。多序列比对表明,T4 Endo VII的催化重要残基在这些蛋白质中都得到了很好的保守。我们的定点诱变研究进一步证实,T4 Endo VII的催化重要残基对F - CphI的活性也至关重要,因此F - CphI可能使用与Endo VII相似的蛋白质折叠来切割DNA。含有Endo VII基序的序列的系统发育树表明,假定的解离酶聚为一个进化枝,而假定的归巢内切核酸酶和限制性内切核酸酶聚为另一个进化枝。
基于独特的保守残基,我们提出F - CphI代表一个新的归巢内切核酸酶家族,命名为DHHRN家族。我们的系统发育分析可用于预测许多以前未知蛋白质的功能。