Yao M, Kow Y W
Division of Cancer Biology, Department of Radiation Oncology, Emory University School of Medicine, Atlanta, Georgia 30335, USA.
J Biol Chem. 1996 Nov 29;271(48):30672-6. doi: 10.1074/jbc.271.48.30672.
Deoxyinosine 3'-endonuclease, an Escherichia coli repair enzyme that recognizes and cleaves DNA containing deoxyinosine and base mismatches, can cleave heteroduplexes containing a hairpin or unpaired loop. These DNA structures, referred to as insertion/deletion mismatches (IDM), are abnormal intermediate structures generated during replication of repetitive DNA sequences. In addition, the enzyme also cleaved the 5'-single-stranded tails of flap and pseudo-Y DNA structures, suggesting that deoxyinosine 3'-endonuclease is a bacterial functional homologue of human FEN1 and yeast RTH1 nucleases. These biochemical properties suggest that deoxyinosine 3'-endonuclease might be important in the repair of IDM structures generated in lagging strand during DNA replication.
脱氧肌苷3'-内切核酸酶是一种大肠杆菌修复酶,可识别并切割含有脱氧肌苷和碱基错配的DNA,它还能切割含有发夹或未配对环的异源双链体。这些DNA结构被称为插入/缺失错配(IDM),是在重复DNA序列复制过程中产生的异常中间结构。此外,该酶还能切割瓣状和假Y DNA结构的5'-单链尾巴,这表明脱氧肌苷3'-内切核酸酶是人类FEN1和酵母RTH1核酸酶的细菌功能同源物。这些生化特性表明,脱氧肌苷3'-内切核酸酶可能在DNA复制过程中后随链产生的IDM结构的修复中起重要作用。