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生殖支原体中的外切核糖核酸酶R既能进行RNA加工又能发挥降解功能,且对RNA核糖甲基化敏感。

Exoribonuclease R in Mycoplasma genitalium can carry out both RNA processing and degradative functions and is sensitive to RNA ribose methylation.

作者信息

Lalonde Maureen S, Zuo Yuhong, Zhang Jianwei, Gong Xin, Wu Shaohui, Malhotra Arun, Li Zhongwei

机构信息

Department of Biomedical Science, Florida Atlantic University, Boca Raton, FL 33431, USA.

出版信息

RNA. 2007 Nov;13(11):1957-68. doi: 10.1261/rna.706207. Epub 2007 Sep 13.

Abstract

Mycoplasma genitalium, a small bacterium having minimal genome size, has only one identified exoribonuclease, RNase R (MgR). We have purified MgR to homogeneity, and compared its RNA degradative properties to those of its Escherichia coli homologs RNase R (EcR) and RNase II (EcII). MgR is active on a number of substrates including oligoribonucleotides, poly(A), rRNA, and precursors to tRNA. Unlike EcR, which degrades rRNA and pre-tRNA without formation of intermediate products, MgR appears sensitive to certain RNA structural features and forms specific products from these stable RNA substrates. The 3'-ends of two MgR degradation products of 23S rRNA were mapped by RT-PCR to positions 2499 and 2553, each being 1 nucleotide downstream of a 2'-O-methylation site. The sensitivity of MgR to ribose methylation is further demonstrated by the degradation patterns of 16S rRNA and a synthetic methylated oligoribonucleotide. Remarkably, MgR removes the 3'-trailer sequence from a pre-tRNA, generating product with the mature 3'-end more efficiently than EcII does. In contrast, EcR degrades this pre-tRNA without the formation of specific products. Our results suggest that MgR shares some properties of both EcR and EcII and can carry out a broad range of RNA processing and degradative functions.

摘要

生殖支原体是一种基因组规模极小的细菌,它只有一种已被鉴定的外切核糖核酸酶,即核糖核酸酶R(MgR)。我们已将MgR纯化至同质,并将其RNA降解特性与其大肠杆菌同源物核糖核酸酶R(EcR)和核糖核酸酶II(EcII)的特性进行了比较。MgR对多种底物具有活性,包括寡核糖核苷酸、聚腺苷酸、核糖体RNA(rRNA)和转运RNA(tRNA)前体。与EcR不同,EcR降解rRNA和前体tRNA时不会形成中间产物,而MgR似乎对某些RNA结构特征敏感,并从这些稳定的RNA底物形成特定产物。通过逆转录聚合酶链反应(RT-PCR)将23S rRNA的两种MgR降解产物的3'末端定位到2499和2553位,每个末端都在2'-O-甲基化位点下游1个核苷酸处。16S rRNA和合成甲基化寡核糖核苷酸的降解模式进一步证明了MgR对核糖甲基化的敏感性。值得注意的是,MgR从tRNA前体中去除3'拖尾序列,比EcII更有效地产生具有成熟3'末端的产物。相比之下,EcR降解这种tRNA前体时不会形成特定产物。我们的结果表明,MgR兼具EcR和EcII的一些特性,并且可以执行广泛的RNA加工和降解功能。

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