Morgan M A, Shatkin A J
Biochemistry. 1980 Dec 23;19(26):5960-6. doi: 10.1021/bi00567a003.
Inosine 5'-triphosphate (ITP) can be utilized in place of guanosine 5'-triphosphate (GTP) for both the initiation and the elongation steps of reovirus transcription, resulting in the synthesis of mRNAs containing 5'-terminal m7IpppIm and internal pI. The apparent molecular weights of the I-substituted products were altered as a consequence of the absence of G-C base pairs and accompanying loss of ordered structure. The migration of I-substituted RNAs in agarose gels and glycerol gradients was similar to glyoxal-treated transcripts; i.e., it decreased 2-fold as compared to the corresponding untreated G-containing mRNAs. 7-Methylinosine-capped (m7I-capped), I-substituted transcripts readily attached to wheat germ 80S ribosomes. Unlike native G-containing mRNAs, they also formed heavier complexes that sedimented faster than 80S complexes even in the presence of the nonhydrolyzable ATP analogue AMPP(NH)P and elongation inhibitor sparsomycin. I-substituted molecules that were capped posttranscriptionally to form m7G-capped 5' ends yielded mostly 80S monosomes, consistent with a strong influence of 5'-terminal structure on initiation of translation. Under limited conditions of initiation, I-substituted RNAs outcompeted G-containing transcripts for ribosome attachment. Although the results are consistent with enhanced binding and freer movement of ribosomes on unstructured templates, synthesis of acid-precipitable polypeptides in wheat germ extract directed by I-substituted RNAs was 15-fold less than with G-containing mRNAs.
肌苷5'-三磷酸(ITP)可替代鸟苷5'-三磷酸(GTP)用于呼肠孤病毒转录的起始和延伸步骤,从而导致合成含有5'-末端m7IpppIm和内部pI的mRNA。由于缺少G-C碱基对以及随之而来的有序结构丧失,I取代产物的表观分子量发生了改变。I取代的RNA在琼脂糖凝胶和甘油梯度中的迁移与经乙二醛处理的转录本相似;即,与相应的未处理的含G的mRNA相比,其迁移率降低了2倍。7-甲基肌苷封端(m7I封端)的I取代转录本很容易附着在小麦胚芽80S核糖体上。与天然的含G的mRNA不同,即使在存在不可水解的ATP类似物AMPP(NH)P和延伸抑制剂稀疏霉素的情况下,它们也会形成比80S复合物沉降更快的更重的复合物。转录后封端形成m7G封端的5'末端的I取代分子主要产生80S单体,这与5'-末端结构对翻译起始的强烈影响一致。在有限的起始条件下,I取代的RNA在核糖体附着方面比含G的转录本更具竞争力。尽管结果与核糖体在无结构模板上的结合增强和移动更自由一致,但I取代的RNA在小麦胚芽提取物中指导合成的酸沉淀多肽比含G的mRNA少15倍。