Department of Biomedical Science, Charles E Schmidt College of Medicine, Florida Atlantic University, Boca Raton, Florida 33431, USA.
J Biol Chem. 2012 Jul 6;287(28):23427-33. doi: 10.1074/jbc.M111.324970. Epub 2012 May 17.
Mycoplasma genitalium is expected to metabolize RNA using unique pathways because its minimal genome encodes very few ribonucleases. In this work, we report that the only exoribonuclease identified in M. genitalium, RNase R, is able to remove tRNA 3'-trailers and generate mature 3'-ends. Several sequence and structural features of a tRNA precursor determine its precise processing at the 3'-end by RNase R in a purified system. The aminoacyl-acceptor stem plays a major role in stopping RNase R digestion at the mature 3'-end. Disruption of the stem causes partial or complete degradation of the pre-tRNA by RNase R, whereas extension of the stem results in the formation of a product terminating downstream at the new mature 3'-end. In addition, the 3'-terminal CCA sequence and the discriminator residue influence the ability of RNase R to stop at the mature 3'-end. RNase R-mediated generation of the mature 3'-end prefers a sequence of RCCN at the 3' terminus of tRNA. Variations of this sequence may cause RNase R to trim further and remove terminal CA residues from the mature 3'-end. Therefore, M. genitalium RNase R can precisely remove the 3'-trailer of a tRNA precursor by recognizing features in the terminal domains of tRNA, a process requiring multiple RNases in most bacteria.
支原体生殖器预计将使用独特的途径代谢 RNA,因为其最小的基因组编码很少的核糖核酸酶。在这项工作中,我们报告说,在支原体生殖器中唯一鉴定出的外切核酸酶,RNase R,能够去除 tRNA 3'-尾部并生成成熟的 3'-末端。在纯化系统中,tRNA 前体的几个序列和结构特征决定了其在 3'-末端被 RNase R 精确加工。氨酰-受体茎在 RNase R 在成熟 3'-末端停止消化中起主要作用。茎的破坏导致前 tRNA 部分或完全降解,而茎的延伸导致在新成熟 3'-末端下游形成产物。此外,3'-末端的 CCA 序列和判别残基影响 RNase R 在成熟 3'-末端停止的能力。RNase R 介导的成熟 3'-末端的生成偏爱 tRNA 3'末端的 RCCN 序列。该序列的变化可能导致 RNase R 进一步修剪并从成熟 3'-末端去除末端 CA 残基。因此,支原体生殖器 RNase R 可以通过识别 tRNA 末端结构域中的特征,精确地去除 tRNA 前体的 3'-尾部,而大多数细菌中这一过程需要多种核糖核酸酶。