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首页> 外文期刊>Journal of bacteriology >RepR protein expression on plasmid pIP501 is controlled by an antisense RNA-mediated transcription attenuation mechanism.
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RepR protein expression on plasmid pIP501 is controlled by an antisense RNA-mediated transcription attenuation mechanism.

机译:质粒pIP501上的RepR蛋白表达受反义RNA介导的转录衰减机制控制。

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Expression of the rate-limiting initiator protein RepR of plasmid pIP501 is controlled by the antisense RNAIII. Mutational alteration of individual G residues within the single-stranded loops of RNAIII led to an increase in copy number. In contrast to the G-rich single-stranded loops, two smaller AT-rich loops of RNAIII were found to be dispensable for its inhibitory function. Reciprocal mutations in the same loop compensated for each other's effect, and a destabilization of the major stem structure of RNAIII also resulted in an increased copy number. These data were consistent with the idea that the interaction of RNAIII with its target starts with the formation of a kissing complex between the single-stranded loops of both molecules. The repR mRNA leader sequence, which includes the target of RNAIII, is able to assume two alternative structures due to the presence of two inverted repeats the individual sequences of which are mutually complementary. In the presence of the antisense RNAIII, one of these inverted repeats (IR2) is forced to fold into a transcriptional terminator structure that prevents transcription of the repR gene. In the absence of RNAIII, formation of the transcriptional terminator is prevented and expression of the essential repR gene can proceed normally. This antisense RNA-driven transcriptional attenuation mechanism was supported by extensive deletional analysis and direct evidence that IR2 functions as a transcriptional terminator.
机译:质粒pIP501的限速启动子蛋白RepR的表达由反义RNAIII控制。 RNAIII单链环内单个G残基的突变改变导致拷贝数增加。与富含G的单链环相反,发现RNAIII的两个较小的富含AT的环由于其抑制功能是可有可无的。同一环中的相互突变补偿了彼此的作用,RNAIII主要茎结构的不稳定也导致拷贝数增加。这些数据与RNAIII与其靶标相互作用始于两个分子的单链环之间的亲吻复合物形成的想法是一致的。 repR mRNA的前导序列(包括RNAIII的靶标)由于两个反向重复序列的存在而能够呈现两个替代结构,而两个反向重复序列的各个序列是相互互补的。在反义RNAIII的存在下,这些反向重复序列(IR2)之一被迫折叠成转录终止子结构,从而阻止了repR基因的转录。在没有RNAIII的情况下,可以防止转录终止子的形成,并且必需repR基因的表达可以正常进行。广泛的缺失分析和直接的证据表明IR2作为转录终止子,支持了这种反义RNA驱动的转录衰减机制。

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