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连接核糖核酸酶:嗜热栖热菌HB8的核糖核酸酶HII直系同源物,相较于RNA/DNA异源双链体,更倾向于RNA-DNA连接。

Junction ribonuclease: a ribonuclease HII orthologue from Thermus thermophilus HB8 prefers the RNA-DNA junction to the RNA/DNA heteroduplex.

作者信息

Ohtani Naoto, Tomita Masaru, Itaya Mitsuhiro

机构信息

Institute for Advanced Biosciences, Keio University, Tsuruoka, Yamagata 997-0017, Japan.

出版信息

Biochem J. 2008 Jun 15;412(3):517-26. doi: 10.1042/BJ20080140.

Abstract

The genome of an extremely thermophilic bacterium, Thermus thermophilus HB8, contains a single ORF (open reading frame) encoding an RNase-HII-like sequence. Despite the presence of significant amino acid sequence identities with RNase (ribonuclease) HII enzymes, the ORF TTHA0198 could not suppress the temperature-sensitive growth defect of an RNase-H-deficient Escherichia coli mutant and the purified recombinant protein could not cleave an RNA strand of an RNA/DNA heteroduplex, suggesting that the TTHA0198 exhibited no RNase H activity both in vivo and in vitro. When oligomeric RNA-DNA/DNAs were used as a mimic substrate for Okazaki fragments, however, the protein cleaved them only at the 5' side of the last ribonucleotide at the RNA-DNA junction. In fact, the TTHA0198 protein prefers the RNA-DNA junction to the RNA/DNA hybrid. We have referred to this activity as JRNase (junction RNase) activity, which recognizes an RNA-DNA junction of the RNA-DNA/DNA heteroduplex and cleaves it leaving a mono-ribonucleotide at the 5' terminus of the RNA-DNA junction. E. coli and Deinococcus radiodurans RNases HII also cleaved the RNA-DNA/DNA substrates at the same site with a different metal-ion preference from that for RNase H activity, implying that the enzymes have JRNase activity as well as RNase H activity. The specialization in the JRNase activity of the RNase HII orthologue from T. thermophilus HB8 (Tth-JRNase) suggests that the JRNase activity of RNase HII enzymes might be independent of the RNase H activity.

摘要

嗜热栖热菌HB8(Thermus thermophilus HB8)的基因组包含一个单一的开放阅读框(ORF),该阅读框编码一个类似核糖核酸酶HII(RNase-HII)的序列。尽管该序列与核糖核酸酶(RNase)HII酶存在显著的氨基酸序列同一性,但ORF TTHA0198无法抑制核糖核酸酶H缺陷型大肠杆菌突变体的温度敏感生长缺陷,且纯化的重组蛋白无法切割RNA/DNA杂合双链中的RNA链,这表明TTHA0198在体内和体外均无RNase H活性。然而,当使用寡聚RNA-DNA/DNA作为冈崎片段的模拟底物时,该蛋白仅在RNA-DNA连接处最后一个核糖核苷酸的5'侧切割它们。实际上,TTHA0198蛋白更倾向于RNA-DNA连接处而非RNA/DNA杂交体。我们将这种活性称为连接核糖核酸酶(JRNase)活性,它识别RNA-DNA/DNA杂合双链的RNA-DNA连接处并进行切割,在RNA-DNA连接处的5'末端留下一个单核糖核苷酸。大肠杆菌和耐辐射球菌(Deinococcus radiodurans)的RNases HII也在同一位置切割RNA-DNA/DNA底物,其对金属离子的偏好与RNase H活性不同,这意味着这些酶也具有JRNase活性以及RNase H活性。嗜热栖热菌HB8的RNase HII同源物(Tth-JRNase)在JRNase活性方面的特异性表明,RNase HII酶的JRNase活性可能独立于RNase H活性。

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