Persson C, Wagner E G, Nordström K
Department of Microbiology, University of Uppsala, Sweden.
EMBO J. 1990 Nov;9(11):3767-75. doi: 10.1002/j.1460-2075.1990.tb07590.x.
The replication frequency of plasmid R1 is determined by the availability of the RepA protein, which acts at the origin of replication to promote initiation. Synthesis of RepA is negatively regulated both at the transcriptional and post-transcriptional levels. Post-transcriptional control is exerted through the action of an antisense RNA, CopA RNA. The target of CopA RNA, CopT RNA, is located in the leader region of the RepA mRNA. Binding between CopA and CopT inhibits repA expression. We have previously presented an in vitro analysis of the binding reaction between CopA and CopT RNAs. In this communication, we extend the in vitro analysis by determining the regions of CopA required for binding, and also demonstrate that binding occurs in at least two steps. The first step is the formation of an initial, transient complex; stem-loop II is the structure in CopA necessary and sufficient for this step. The subsequent step(s), resulting in the formation of a complete duplex, requires a stretch of single-stranded nucleotides located 5' to stem-loop II in CopA, and its counterpart in CopT. We show that the single-stranded region can be positioned on either side of stem-loop II provided that there is a complementary stretch of nucleotides in CopT, indicating that the second step(s) is not sequence-specific. Furthermore, the effects of salt concentration and temperature on the binding reaction indicate that duplex formation occurs through a mechanism of gradual intra-strand breaking and inter-strand formation of hydrogen bonds.
质粒R1的复制频率由RepA蛋白的可利用性决定,RepA蛋白在复制起点起作用以促进起始。RepA的合成在转录水平和转录后水平均受到负调控。转录后调控是通过反义RNA CopA RNA的作用来实现的。CopA RNA的靶标CopT RNA位于RepA mRNA的前导区。CopA与CopT之间的结合抑制repA的表达。我们之前已经对CopA与CopT RNA之间的结合反应进行了体外分析。在本通讯中,我们通过确定结合所需的CopA区域扩展了体外分析,并且还证明结合至少分两步进行。第一步是形成初始的瞬时复合物;茎环II是CopA中此步骤所必需且足够的结构。导致形成完整双链体的后续步骤需要CopA中位于茎环II 5'端的一段单链核苷酸及其在CopT中的对应物。我们表明,只要CopT中有一段互补的核苷酸,单链区域就可以位于茎环II的任一侧,这表明第二步不是序列特异性的。此外,盐浓度和温度对结合反应的影响表明双链体的形成是通过氢键的链内逐渐断裂和链间形成的机制进行的。