Brantl S, Wagner E G
Institut für Molekularbiologie, Friedrich-Schiller-Universität Jena, Winzerlaer Strasse 10, Jena D-07745, Germany.
Mol Microbiol. 2000 Mar;35(6):1469-82. doi: 10.1046/j.1365-2958.2000.01813.x.
Antisense RNAs regulate plasmid replication by several different mechanisms. One of these mechanisms, transcriptional attenuation, was first described for the staphylococcal plasmid pT181, and later for the streptococcal plasmids pIP501 and pAMbeta1. Previously, we performed detailed in vitro and in vivo analyses of the pIP501 system. Here, we present an in vitro analysis of the antisense system of plasmid pT181. The secondary structures of antisense and sense RNA species of different lengths were determined. Binding rate constants for sense/antisense RNA pairs were measured, and functional segments required for complex formation were determined. A single-round transcription assay was used for in vitro analysis of transcriptional attenuation. A comparison between pT181 and pIP501 revealed several differences; whereas a truncated derivative of pIP501 antisense RNA was sufficient for stable complex formation, both stem-loop structures of pT181-RNAI were required. In contrast to the sense RNA of pIP501, which showed an intrinsic propensity to terminate (30-50% in the absence of antisense RNA), the sense RNA of pT181 required antisense RNA for induced termination. Rate constants of formation of pT181 sense-antisense RNA complexes were similar to inhibition rate constants, in striking contrast to pIP501, in which inhibition occurred at least 10-fold faster than stable binding.
反义RNA通过几种不同机制调控质粒复制。其中一种机制,即转录衰减,最初是在葡萄球菌质粒pT181中被描述的,后来在链球菌质粒pIP501和pAMbeta1中也有发现。此前,我们对pIP501系统进行了详细的体外和体内分析。在此,我们展示了对质粒pT181反义系统的体外分析。确定了不同长度的反义RNA和正义RNA分子的二级结构。测量了正义/反义RNA对的结合速率常数,并确定了形成复合物所需的功能片段。采用单轮转录分析对转录衰减进行体外分析。pT181和pIP501之间的比较揭示了几个差异;虽然pIP501反义RNA的截短衍生物足以形成稳定的复合物,但pT181-RNAI的两个茎环结构都是必需的。与pIP501的正义RNA不同,pIP501的正义RNA在没有反义RNA时具有内在的终止倾向(30%-50%),而pT181的正义RNA需要反义RNA来诱导终止。pT181正义-反义RNA复合物的形成速率常数与抑制速率常数相似,这与pIP501形成鲜明对比,在pIP501中,抑制发生的速度至少比稳定结合快10倍。