Bönisch Clemens, Temme Claudia, Moritz Bodo, Wahle Elmar
Institute of Biochemistry and Biotechnology, University of Halle, Kurt-Mothes-Strasse 3, Halle, Germany.
J Biol Chem. 2007 Jul 27;282(30):21818-28. doi: 10.1074/jbc.M702998200. Epub 2007 Jun 1.
Two general pathways of mRNA decay have been characterized in yeast. Both start with deadenylation. The major pathway then proceeds via cap hydrolysis and 5'-exonucleolytic degradation whereas the minor pathway consists of 3'-exonucleolytic decay followed by hydrolysis of the remaining cap structure. In higher eukaryotes, these pathways of mRNA decay are believed to be conserved but have not been well characterized. We have investigated the decay of the hsp70 mRNA in Drosophila Schneider cells. As shown by the use of reporter constructs, rapid deadenylation of this mRNA is directed by its 3'-untranslated region. The main deadenylase is the CCR4.NOT complex; the PAN nuclease makes a lesser contribution. Heat shock prevents deadenylation not only of the hsp70 but also of bulk mRNA. A completely deadenylated capped hsp70 mRNA decay intermediate accumulates transiently and is degraded via cap hydrolysis and 5'-decay. Thus, decapping is a slow step in the degradation pathway. Cap hydrolysis is also inhibited during heat shock. Degradation of reporter RNAs from the 3'-end became detectable only upon inhibition of 5'-decay and thus represents a minor decay pathway. Because two reporter RNAs and at least two endogenous mRNAs were degraded primarily from the 5'-end with cap hydrolysis as a slow step, this pathway appears to be of general importance for mRNA decay in Drosophila.
在酵母中已鉴定出两种mRNA降解的一般途径。两者均始于去腺苷酸化。主要途径随后通过帽水解和5'-核酸外切酶降解进行,而次要途径则由3'-核酸外切酶降解,随后是剩余帽结构的水解。在高等真核生物中,这些mRNA降解途径被认为是保守的,但尚未得到很好的表征。我们研究了果蝇Schneider细胞中hsp70 mRNA的降解。如使用报告构建体所示,该mRNA的快速去腺苷酸化由其3'-非翻译区引导。主要的去腺苷酸酶是CCR4.NOT复合物;PAN核酸酶的作用较小。热休克不仅阻止hsp70的去腺苷酸化,也阻止大量mRNA的去腺苷酸化。完全去腺苷酸化的带帽hsp70 mRNA降解中间体短暂积累,并通过帽水解和5'-降解进行降解。因此,脱帽是降解途径中的一个缓慢步骤。热休克期间帽水解也受到抑制。只有在抑制5'-降解后,从3'-末端对报告RNA的降解才变得可检测到,因此代表了一种次要的降解途径。由于两种报告RNA和至少两种内源性mRNA主要从5'-末端降解,帽水解是一个缓慢步骤,因此该途径似乎对果蝇中mRNA的降解具有普遍重要性。