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TRAP-5' stem-loop interaction increases the efficiency of transcription termination in the Bacillus subtilis trpEDCFBA operon leader region

机译:TRAP-5'茎环相互作用提高了枯草芽孢杆菌trpEDCFBA操纵子前导区中转录终止的效率

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摘要

TRAP regulates expression of the Bacillus subtilis trpEDCFBA operon by a transcription attenuation mechanism in which tryptophan-activated TRAP binds to 11 (G/U)AG repeats in the nascent trp leader transcript. Bound TRAP blocks formation of an antiterminator structure and allows formation of an overlapping intrinsic terminator upstream of the trp operon structural genes. A 59 stem-loop (5'SL) structure located upstream of the triplet repeat region also interacts with TRAP. TRAP-5'SLRNA interaction participates in the transcription attenuation mechanism by preferentially increasing the affinity of TRAP for the nascent trp leader transcript during the early stages of transcription, when only a few triplet repeats have been synthesized. Footprinting assays indicated that the 5'SL contacts TRAP through two discrete groups of single-stranded nucleotides that lie in the hairpin loop and in an internal loop. Filter binding and in vivo expression assays of 5'SL mutants established that G7, A8, and A9 from the internal loop, and A19 and G20 from the hairpin loop are critical for proper 5'SL function. These nucleotides are conserved among certain other 5'SL-containing organisms. Single-round transcription results indicated that the 5'SL increases the termination efficiency when transcription is fast; however, the influence of the 5'SL was lost when transcription was slowed by reducing the ribonucleoside triphosphate concentration. Since there is a limited amount of time for TRAP to bind to the nascent transcript and promote termination, our data suggest that the contribution of TRAP-5'SL interaction increases the rate of TRAP binding, which, in turn, increases the efficiency of transcription termination.
机译:TRAP通过转录衰减机制调节枯草芽孢杆菌trpEDCFBA操纵子的表达,其中色氨酸激活的TRAP与新生的trp前导转录物中的11个(G / U)AG重复结合。结合的TRAP阻断抗终止子结构的形成,并允许在trp操纵子结构基因上游形成重叠的固有终止子。位于三联体重复区上游的59个茎环(5'SL)结构也与TRAP相互作用。 TRAP-5'SLRNA相互作用通过在转录的早期优先增加TRAP对新生的trp前导转录物的亲和力来参与转录衰减机制,此时仅合成了一些三联体重复序列。足迹分析表明5'SL通过位于发夹环和内部环中的两个离散的单链核苷酸组与TRAP接触。 5'SL突变体的滤膜结合和体内表达试验确定,内部环的G7,A8和A9以及发夹环的A19和G20对于适当的5'SL功能至关重要。这些核苷酸在某些其他含5'SL的生物中是保守的。单轮转录结果表明,转录快时5'SL可提高终止效率。然而,当通过降低核糖核苷三磷酸浓度降低转录速度时,失去了5'SL的影响。由于TRAP绑定到新生转录本并促进终止的时间有限,因此我们的数据表明TRAP-5'SL相互作用的贡献增加了TRAP结合的速率,进而提高了转录效率终止。

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