Yousef Mary R, Grundy Frank J, Henkin Tina M
Department of Microbiology, The Ohio State University, Columbus, Ohio 43210, USA.
RNA. 2003 Sep;9(9):1148-56. doi: 10.1261/rna.5540203.
Transcription antitermination of the Bacillus subtilis glyQS gene, a member of the T box gene regulation family, can be induced during in vitro transcription in a minimal system using purified B. subtilis RNA polymerase by the addition of unmodified T7 RNA polymerase-transcribed tRNA(Gly). Antitermination was previously shown to depend on base-pairing between the glyQS leader and the tRNA at the anticodon and acceptor ends. In this study, variants of tRNA(Gly) were generated to identify additional tRNA elements required for antitermination activity, and to determine the effect of structural changes in the tRNA. We find that additions to the 3' end of the tRNA blocked antitermination, in agreement with the prediction that uncharged tRNA is the effector in vivo, whereas insertion of 1 nucleotide between the acceptor stem and the 3' UCCA residues had no effect. Disruption of the D-loop/T-loop tertiary interaction inhibited antitermination function, as was previously demonstrated for tRNA(Tyr)-directed antitermination of the B. subtilis tyrS gene in vivo. Insertion of a single base pair in the anticodon stem was tolerated, whereas further insertions abolished antitermination. However, we find that major alterations in the length of the acceptor stem are tolerated, and the insertions exhibited a pattern of periodicity suggesting that there is face-of-the-helix dependence in the positioning of the unpaired UCCA residues at the 3' end of the tRNA for interaction with the antiterminator bulge and antitermination.
枯草芽孢杆菌glyQS基因属于T盒基因调控家族,在体外转录的最小系统中,通过添加未修饰的T7 RNA聚合酶转录的tRNA(Gly),利用纯化的枯草芽孢杆菌RNA聚合酶可诱导其转录抗终止。先前已表明,抗终止取决于glyQS前导序列与反密码子和受体末端的tRNA之间的碱基配对。在本研究中,生成了tRNA(Gly)变体,以鉴定抗终止活性所需的其他tRNA元件,并确定tRNA结构变化的影响。我们发现,tRNA 3'末端的添加会阻断抗终止,这与未充电的tRNA是体内效应物的预测一致,而在受体茎和3'UCCA残基之间插入1个核苷酸则没有影响。D环/T环三级相互作用的破坏抑制了抗终止功能,这与之前在体内枯草芽孢杆菌tyrS基因的tRNA(Tyr)导向抗终止中所证明的情况相同。反密码子茎中插入单个碱基对是可以容忍的,而进一步的插入则消除了抗终止。然而,我们发现受体茎长度的主要改变是可以容忍的,并且插入呈现出周期性模式,这表明tRNA 末端3'处未配对的UCCA残基与抗终止子凸起相互作用以及抗终止时存在螺旋面依赖性。