Dmitriev S E, Andreev D E, Ad'ianova Z V, Terenin I M, Shatskiĭ I N
Mol Biol (Mosk). 2009 Jan-Feb;43(1):119-25.
According to generally accepted scanning model proposed by M. Kozak, the secondary structure of 5'-untranslated regions (5'-UTR) of eukaryotic mRNAs can only cause an inhibitory effect on the translation initiation since it would counteract migration of the 40S ribosomal subunit along the mRNA polynucleotide chain. Thus, the existence of efficiently translatable mRNAs with long and highly structured 5'-UTRs is not compatible with the cap-dependent scanning mechanism. It is expected that such mRNAs should use alternative ways of translation initiation to be efficiently translated, first of all the mechanism of the internal ribosome entry mediated by special RNA structures called IRESes (for Internal Ribosome Entry Sites), which have been proposed to reside within their 5'-UTRs. In this paper, it is shown that this point of view is not correct and most probably based on experiments of mRNA translation in rabbit reticulocyte lysate. This cell free system does not reflect correctly the ratio of translation efficiencies of various mRNAs which is observed in the living cell. Using five different mRNAs of similar design which possess either relatively short leaders of cellular mRNAs (beta-globin and beta-actin mRNAs) or long and highly structured 5'-UTRs (c-myc, LINE-1, Apaf-1 mRNAs), we show that the translation activities of all tested 5'-UTRs are comparable, both in transfected cells and in a whole cytoplasmic extract of cultivated cells. This activity is strongly dependent on the presence of the cap at their 5'-ends.
根据M. 科扎克提出的普遍接受的扫描模型,真核生物mRNA的5'-非翻译区(5'-UTR)的二级结构只会对翻译起始产生抑制作用,因为它会阻碍40S核糖体亚基沿mRNA多核苷酸链的迁移。因此,具有长且高度结构化的5'-UTR的高效可翻译mRNA的存在与帽依赖性扫描机制不兼容。预计此类mRNA应使用替代的翻译起始方式来实现高效翻译,首先是由称为IRES(内部核糖体进入位点)的特殊RNA结构介导的内部核糖体进入机制,有人提出这些结构存在于它们的5'-UTR内。本文表明,这种观点是不正确的,很可能是基于兔网织红细胞裂解物中mRNA翻译的实验。这种无细胞系统不能正确反映活细胞中观察到的各种mRNA的翻译效率之比。我们使用五种设计相似的不同mRNA,它们要么具有相对较短的细胞mRNA前导序列(β-珠蛋白和β-肌动蛋白mRNA),要么具有长且高度结构化的5'-UTR(c-myc、LINE-1、Apaf-1 mRNA),结果表明,在转染细胞和培养细胞的全细胞质提取物中,所有测试的5'-UTR的翻译活性都是可比的。这种活性强烈依赖于其5'-末端帽的存在。