Beelman C A, Parker R
Department of Molecular and Cellular Biology, University of Arizona, Tucson 85721.
J Biol Chem. 1994 Apr 1;269(13):9687-92.
Several observations in eukaryotic cells suggest that the processes of translation and mRNA turnover are interrelated. To understand this relationship, we examined the effects of translational inhibition on the decay of the unstable yeast MFA2 mRNA, which is degraded in a 5' to 3' direction following deadenylation (1). Although inhibition of translation in cis stabilizes several unstable mammalian transcripts, inhibiting translation of the MFA2 mRNA in cis, by the insertion of a large stem-loop structure in the 5'-untranslated region (UTR), did not affect the half-life, deadenylation rate, or appearance of specific decay intermediates. Therefore, efficient translational elongation on the MFA2 mRNA is not a requirement for the normal rate, or mechanism, of degradation of this transcript. In contrast, inhibition of translation in trans, by the addition of cycloheximide, stabilized the deadenylated form of MFA2 mRNA. Furthermore, the MFA2 transcripts that were not translated due to a stem-loop in the 5'-UTR were also stabilized in the presence of cycloheximide, suggesting that cycloheximide is likely to affect mRNA stability indirectly. These results suggest possible relationships between the mechanisms of mRNA decay and the translational process.
真核细胞中的一些观察结果表明,翻译过程和mRNA周转是相互关联的。为了理解这种关系,我们研究了翻译抑制对不稳定的酵母MFA2 mRNA衰变的影响,该mRNA在去腺苷酸化后沿5'至3'方向降解(1)。虽然顺式翻译抑制可稳定几种不稳定的哺乳动物转录本,但通过在5'-非翻译区(UTR)插入一个大的茎环结构来顺式抑制MFA2 mRNA的翻译,并不影响半衰期、去腺苷酸化速率或特定衰变中间体的出现。因此,MFA2 mRNA上高效的翻译延伸不是该转录本正常降解速率或机制的必要条件。相反,通过添加环己酰亚胺进行反式翻译抑制,可稳定MFA2 mRNA的去腺苷酸化形式。此外,由于5'-UTR中的茎环而未被翻译的MFA2转录本在存在环己酰亚胺的情况下也得到了稳定,这表明环己酰亚胺可能间接影响mRNA稳定性。这些结果表明了mRNA衰变机制与翻译过程之间可能存在的关系。