Zvereva M I, Ivanov P V, Teraoka Y, Topilina N I, Dontsova O A, Bogdanov A A, Kalkum M, Nierhaus K H, Shpanchenko O V
Department of Chemistry, Moscow State University, Moscow 119899, Russia.
J Biol Chem. 2001 Dec 14;276(50):47702-8. doi: 10.1074/jbc.M106786200. Epub 2001 Oct 10.
Transfer-messenger RNA (tmRNA) is a stable RNA in bacteria of 360 +/- 40 nucleotides that can be charged with alanine and can function as both tRNA and mRNA. Ribosomes that are stalled either in a coding region of mRNA or at the 3' end of an mRNA fragment lacking a stop codon are rescued by replacing their mRNA for tmRNA. Here we demonstrate that the interaction of tmRNA with the elongation factor Tu shows unexpected features. Deacylated tmRNA can form a complex with either EF-Tu.GDP or EF-Tu.GTP, the association constants are about one order of magnitude smaller than that of an Ala-tRNA.EF-Tu.GTP complex. tmRNA as well as Ala-tmRNA can be efficiently cross-linked with EF-Tu.GDP using a zero-length cross-link. The efficiency of cross-linking in the case of deacylated tmRNA does not depend on an intact CCA-3' end and is about the same, regardless whether protein mixtures such as the post-ribosomal supernatant (S100 enzymes) or purified EF-Tu are present. Two cross-linking sites with EF-Tu.GDP have been identified that are located outside the tRNA part of tmRNA, indicating an unusual interaction of tmRNA with EF-Tu.GDP.
转移信使核糖核酸(tmRNA)是细菌中一种稳定的核糖核酸,由360±40个核苷酸组成,能够携带丙氨酸,兼具转运核糖核酸(tRNA)和信使核糖核酸(mRNA)的功能。无论是在mRNA编码区停滞的核糖体,还是在缺乏终止密码子的mRNA片段3'端停滞的核糖体,都可通过用tmRNA替换其mRNA来挽救。在此我们证明,tmRNA与延伸因子Tu的相互作用呈现出意想不到的特征。脱酰基tmRNA能与EF-Tu.GDP或EF-Tu.GTP形成复合物,其结合常数比丙氨酰-tRNA.EF-Tu.GTP复合物的结合常数小约一个数量级。使用零长度交联法,tmRNA以及丙氨酰-tmRNA都能与EF-Tu.GDP有效交联。脱酰基tmRNA的交联效率不依赖于完整的CCA-3'末端,无论是否存在诸如核糖体后上清液(S100酶)等蛋白质混合物或纯化的EF-Tu,其交联效率大致相同。已鉴定出与EF-Tu.GDP的两个交联位点,它们位于tmRNA的tRNA部分之外,这表明tmRNA与EF-Tu.GDP存在异常相互作用。