Petersen R B, Lindquist S
Howard Hughes Medical Institute, Department of Molecular Genetics and Cell Biology, University of Chicago, Illinois 60637.
Cell Regul. 1989 Nov;1(1):135-49. doi: 10.1091/mbc.1.1.135.
When Drosophila cells are heat shocked, hsp70 messenger RNA (mRNA) is stable and is translated at high efficiencies. During recovery from heat shock, hsp70 synthesis is repressed and its messenger RNA (mRNA) is degraded in a highly regulated fashion. Dramatic differences in the timing of repression and degradation are observed after heat treatments of different severities. The 3' untranslated region (UTR) of the hsp70 mRNA was sufficient to transfer this regulated degradation to heterologous mRNAs. Altering the translational efficiency of the message or changing its natural translation-termination site did not alter its pattern of regulation, although in some cases it changed the absolute rate of degradation. We have previously shown that hsp70 mRNA is very unstable when it is expressed at normal growth temperatures (from a metallothionein promoter). We report here that the 3' untranslated region of the hsp70 mRNA is responsible for this instability as well. We postulate that a mechanism for degrading hsp70 mRNA pre-exists in Drosophila cells, that it is inactivated by heat shock and that it is the reactivation of this mechanism that is responsible for hsp70 repression during recovery. This degradation system may be the same as that used by other unstable mRNAs.
当果蝇细胞受到热激时,热休克蛋白70(hsp70)信使核糖核酸(mRNA)是稳定的,并以高效率进行翻译。在从热激恢复的过程中,hsp70的合成受到抑制,其信使核糖核酸(mRNA)以高度调控的方式被降解。在不同严重程度的热处理后,观察到抑制和降解时间上的显著差异。hsp70 mRNA的3'非翻译区(UTR)足以将这种调控性降解转移到异源mRNA上。改变该信使核糖核酸的翻译效率或改变其天然翻译终止位点,虽然在某些情况下会改变绝对降解速率,但不会改变其调控模式。我们之前已经表明,当hsp70 mRNA在正常生长温度下(从金属硫蛋白启动子)表达时非常不稳定。我们在此报告,hsp70 mRNA的3'非翻译区也导致了这种不稳定性。我们推测,果蝇细胞中预先存在一种降解hsp70 mRNA的机制,热激使其失活,而正是这种机制的重新激活导致了恢复过程中hsp70的抑制。这种降解系统可能与其他不稳定mRNA所使用的系统相同。