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Metastable structures and refolding kinetics in hok mRNA of plasmid R1.

机译:质粒R1的hok mRNA中的亚稳结构和重折叠动力学。

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摘要

Programmed cell death by hok/sok of plasmid R1 and pnd/pndB of R483 mediates plasmid maintenance by killing of plasmid-free cells. It has been previously suggested that premature translation of the plasmid-mediated toxin is prevented during transcription of the hok and pnd mRNAs by the formation of metastable hairpins in the mRNA at the 5' end. Here, experimental evidence is presented for the existence of metastable structures in the 5' leader of the hok and pnd mRNAs in vitro. The kinetics of refolding from the metastable to the stable structure in the isolated fragments of the 5' ends of both the hok and pnd mRNAs could be estimated, in agreement with the structural rearrangement in this region, as predicted to occur during transcription and mRNA activation. The refolding rates of hok and pnd structures are slow enough to allow for the formation of downstream hairpin structures during elongation of the mRNAs, which thereby helps to stabilize the metastable structures. Thus, the kinetic refolding parameters of the hok and pnd mRNAs are consistent with the proposal that the metastable structures prevent premature translation and/or antisense RNA binding during transcription.
机译:质粒R1的hok / sok和R483的pnd / pndB导致的程序性细胞死亡通过杀死无质粒的细胞来介导质粒的维持。以前曾有人提出,在hok和pnd mRNA的转录过程中,通过在mRNA的5'端形成亚稳态的发夹,可以防止质粒介导的毒素的过早翻译。在这里,实验证据表明在体外hok和pnd mRNA的5'端存在亚稳结构。可以估计在hok和pnd mRNA的5'端分离片段中从亚稳态重新折叠成稳定结构的动力学,与该区域的结构重排一致,如预计在转录和mRNA激活期间发生。 hok和pnd结构的重折叠速率足够慢,以允许在mRNA延长过程中形成下游发夹结构,从而有助于稳定亚稳结构。因此,hok和pnd mRNA的动力学重折叠参数与亚稳结构防止转录过程中过早翻译和/或反义RNA结合的提议是一致的。

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