首页> 外文期刊>Journal of bacteriology >trp RNA-Binding Attenuation Protein-5′ Stem-Loop RNA Interaction Is Required for Proper Transcription Attenuation Control of the Bacillus subtilis trpEDCFBAOperon
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trp RNA-Binding Attenuation Protein-5′ Stem-Loop RNA Interaction Is Required for Proper Transcription Attenuation Control of the Bacillus subtilis trpEDCFBAOperon

机译:trp RNA结合减弱蛋白5'茎环RNA相互作用对于枯草芽孢杆菌的正确转录衰减控制是必需的trpEDCFBAOperon

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The trp RNA-binding attenuation protein (TRAP) regulates expression of the Bacillus subtilis trpEDCFBAoperon by a novel transcription attenuation mechanism. Tryptophan-activated TRAP binds to the nascent trp leader transcript by interacting with 11 (G/U)AG repeats, 6 of which are present in an antiterminator structure. TRAP binding to these repeats prevents formation of the antiterminator, thereby promoting formation of an overlapping intrinsic terminator. A third stem-loop structure that forms at the extreme 5′ end of the trp leader transcript also plays a role in the transcription attenuation mechanism. The 5′ stem-loop increases the affinity of TRAP fortrp leader RNA. Results from RNA structure mapping experiments demonstrate that the 5′ stem-loop consists of a 3-bp lower stem, a 5-by-2 asymmetric internal loop, a 6-bp upper stem, and a hexaloop at the apex of the structure. Footprinting results indicate that TRAP interacts with the 5′ stem-loop and that this interaction differs depending on the number of downstream (G/U)AG repeats present in the transcript. Expression studies with trpE′-′lacZtranslational fusions demonstrate that TRAP-5′ stem-loop interaction is required for proper regulation of the trp operon. 3′ RNA boundary experiments indicate that the 5′ structure reduces the number of (G/U)AG repeats required for stable TRAP-trp leader RNA association. Thus, TRAP-5′ stem-loop interaction may increase the likelihood that TRAP will bind to the (G/U)AG repeats in time to block antiterminator formation.
机译: trp RNA结合减弱蛋白(TRAP)通过一种新型的转录减弱机制调节枯草芽孢杆菌trpEDCFBA 操纵子的表达。色氨酸激活的TRAP通过与11个(G / U)AG重复序列相互作用而与新生的 trp 前导序列结合,其中6个重复序列位于抗终止剂结构中。 TRAP与这些重复序列的结合阻止了抗终止剂的形成,从而促进了重叠的固有终止剂的形成。在 trp 前导转录本的5'末端形成的第三个茎环结构在转录减弱机制中也起作用。 5'茎环增加了TRAP对 trp 前导RNA的亲和力。 RNA结构作图实验的结果表明,5'茎环由一个3 bp的下茎,一个5 by-2不对称内部环,一个6 bp的上茎和一个位于结构顶点的六环组成。足迹结果表明TRAP与5'茎环相互作用,并且该相互作用因转录物中存在的下游(G / U)AG重复序列的数量而异。用 trpE'-'lacZ 翻译融合体进行的表达研究表明,正确调节 trp 操纵子需要TRAP-5'茎-环相互作用。 3'RNA边界实验表明5'结构减少了稳定的TRAP- trp 前导RNA缔合所需的(G / U)AG重复数。因此,TRAP-5'茎-环相互作用可以增加TRAP及时结合(G / U)AG重复序列以阻断抗终止剂形成的可能性。

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