Crosio C, Boyl P P, Loreni F, Pierandrei-Amaldi P, Amaldi F
Dipartimento di Biologia, Università di Roma 'Tor Vergata', Via della Ricerca Scientifica, 00133 Roma, Italy and Istituto di Biologia Cellulare, CNR, 00137 Roma, Italy.
Nucleic Acids Res. 2000 Aug 1;28(15):2927-34. doi: 10.1093/nar/28.15.2927.
In vertebrates, the mRNAs encoding ribosomal proteins, as well as other proteins implicated in translation, are characterized by a 5'-untranslated region (5'-UTR), including a stretch of pyrimidines at the 5'-end. The 5'-terminal oligopyrimidine (5'-TOP) sequence, which is involved in the growth-dependent translational regulation characteristic of this class of genes (so-called TOP genes), has been shown to specifically bind the La protein in vitro, suggesting that La might be implicated in translational regulation in vivo. In order to substantiate this hypothesis, we have examined the effect of La on TOP mRNA translational control in both stable and transient transfection experiments. In particular we have constructed and analyzed three stably transfected Xenopus cell lines inducible for overexpression of wild-type La or of putative dominant negative mutated forms. Moreover, La-expressing plasmids have been transiently co-transfected together with a plasmid expressing a reporter TOP mRNA in a human cell line. Our results suggest that in vivo La protein plays a positive role in the translation of TOP mRNA. They also suggest that the function of La is to counteract translational repression exerted by a negative factor, possibly cellular nucleic acid binding protein (CNBP), which has been previously shown to bind the 5'-UTR downstream from the 5'-TOP sequence.
在脊椎动物中,编码核糖体蛋白以及其他与翻译相关蛋白的mRNA,其特征在于具有5'-非翻译区(5'-UTR),包括5'-端的一段嘧啶序列。5'-末端寡嘧啶(5'-TOP)序列参与这类基因(所谓的TOP基因)依赖生长的翻译调控,已显示其在体外能特异性结合La蛋白,这表明La可能在体内参与翻译调控。为了证实这一假设,我们在稳定转染和瞬时转染实验中研究了La对TOP mRNA翻译控制的影响。特别是,我们构建并分析了三种稳定转染的非洲爪蟾细胞系,可诱导野生型La或假定的显性负突变形式的过表达。此外,表达La的质粒已与表达报告TOP mRNA的质粒在人细胞系中进行瞬时共转染。我们的结果表明,在体内La蛋白在TOP mRNA的翻译中起积极作用。它们还表明,La的功能是抵消由一种负因子施加的翻译抑制,这种负因子可能是细胞核酸结合蛋白(CNBP),先前已证明它能结合5'-TOP序列下游的5'-UTR。