Wisdom R, Lee W
Molecular Biology and Virology Laboratory, Salk Institute, San Diego, California 92138.
Genes Dev. 1991 Feb;5(2):232-43. doi: 10.1101/gad.5.2.232.
The stability of certain mRNAs is known to be affected by translation. Some mRNAs appear to be protected from rapid degradation by translation, whereas degradation is coupled to translation for other mRNAs. The molecular determinants of this selective effect of translation are unknown. One example of this effect is the induction of early-response gene mRNAs in the presence of translation inhibitors. To define the molecular basis of induction of early-response gene mRNA expression by inhibitors of protein synthesis, we have performed a mutational analysis of one member of the early response gene family, the c-myc gene. We find that induction by cycloheximide is due to stabilization of c-myc transcripts. The requirements for increased expression of c-myc mRNA by cycloheximide are the presence of the sequence encoding c-myc amino acids 335-439 on a mRNA that can be translated; all other portions of the c-myc gene are dispensable, and this sequence can confer induction of mRNA expression by protein synthesis inhibitors on a heterologous gene. By direct measurement of mRNA turnover in the absence of transcription-blocking drugs, we show that this sequence can function as a selective mRNA destabilizing element, that turnover mediated by this element is translation dependent, and turnover mediated by this element is inhibited by actinomycin D. Our results support the hypothesis that degradation of c-myc mRNA is coupled to translation, that the sequences specifying this form of degradation are contained in the protein-coding sequence, and that translation inhibitors induce expression of c-myc mRNA by blocking turnover mediated by this element.
已知某些mRNA的稳定性会受到翻译的影响。一些mRNA似乎因翻译而免受快速降解,而其他mRNA的降解则与翻译相关联。这种翻译选择性效应的分子决定因素尚不清楚。这种效应的一个例子是在存在翻译抑制剂的情况下早期反应基因mRNA的诱导。为了确定蛋白质合成抑制剂诱导早期反应基因mRNA表达的分子基础,我们对早期反应基因家族的一个成员c-myc基因进行了突变分析。我们发现环己酰亚胺的诱导作用是由于c-myc转录本的稳定。环己酰亚胺增加c-myc mRNA表达的条件是在一个可翻译的mRNA上存在编码c-myc氨基酸335 - 439的序列;c-myc基因的所有其他部分都是可有可无的,并且该序列可以赋予蛋白质合成抑制剂对异源基因mRNA表达的诱导作用。通过在不存在转录阻断药物的情况下直接测量mRNA周转,我们表明该序列可以作为一个选择性的mRNA去稳定化元件,由该元件介导的周转是翻译依赖性的,并且由该元件介导的周转受到放线菌素D的抑制。我们的结果支持以下假设:c-myc mRNA的降解与翻译相关联,指定这种降解形式的序列包含在蛋白质编码序列中,并且翻译抑制剂通过阻断由该元件介导的周转来诱导c-myc mRNA的表达。