Richardson John P
Department of Chemistry, Indiana University, 800 East Kirkwood Avenue, Bloomington, IN 47405, USA.
Cell. 2003 Jul 25;114(2):157-9. doi: 10.1016/s0092-8674(03)00554-3.
In bacteria, one of the major transcriptional termination mechanisms requires a hexameric RNA/DNA helicase known as Rho. One question that has remained unanswered is how the helicase loads onto a nascent transcript so that it can initiate actions on the transcript to cause termination. Recent structures of Rho bound to nucleic acid by show how the individual RNA-binding domains of the 6 subunits are organized and that the ring is split open. The opening is wide enough to accommodate single-stranded RNA and suggests that this conformation is poised to load onto mRNA.
在细菌中,一种主要的转录终止机制需要一种名为Rho的六聚体RNA/DNA解旋酶。一个尚未得到解答的问题是,这种解旋酶如何加载到新生转录本上,以便它能够对转录本启动作用从而导致终止。最近Rho与核酸结合的结构显示了6个亚基各自的RNA结合结构域是如何组织的,并且该环是打开的。这个开口足够宽以容纳单链RNA,这表明这种构象准备好加载到mRNA上。