Beelman C A, Stevens A, Caponigro G, LaGrandeur T E, Hatfield L, Fortner D M, Parker R
Department of Molecular and Cellular Biology, University of Arizona, Tucson, 85721, USA.
Nature. 1996 Aug 15;382(6592):642-6. doi: 10.1038/382642a0.
A major pathway of messenger RNA degradation in eukaryotic cells is initiated by shortening of the poly(A) tail, which, at least in yeast, triggers a decapping reaction, thereby exposing the mRNA to 5' --> 3' degradation. Decapping is the key step in this decay pathway because the transcript body is rapidly degraded following decapping. Accordingly, decapping is the site of numerous controls, including inhibition of decapping by the poly(A) tail and modulation of mRNA decapping rate by specific sequences. Moreover, a specialized decay pathway that degrades aberrant transcripts triggers rapid mRNA decapping independently of poly(A)-tail shortening. We have identified a yeast gene, termed DCP1, that encodes the decapping enzyme, or an essential component of a decapping complex. The protein Dcp1 is required for the normal decay of many unstable and stable yeast mRNAs, as well as mRNAs that are decapped independently of deadenylation. These results indicate that mRNA-specific rates of decapping, and thus decay, will result from differences in the interaction of the DCP1 decapping enzyme with individual transcripts.
真核细胞中信使核糖核酸(mRNA)降解的一条主要途径是由多聚腺苷酸(poly(A))尾巴缩短引发的,至少在酵母中,这会触发脱帽反应,从而使mRNA暴露于5'→3'降解。脱帽是这条降解途径的关键步骤,因为转录本主体在脱帽后会迅速降解。因此,脱帽是众多调控的位点,包括poly(A)尾巴对脱帽的抑制以及特定序列对mRNA脱帽速率的调节。此外,一条降解异常转录本的特殊降解途径会独立于poly(A)尾巴缩短而触发快速的mRNA脱帽。我们鉴定出了一个酵母基因,称为DCP1,它编码脱帽酶或脱帽复合体的一个必需组分。蛋白质Dcp1对于许多不稳定和稳定的酵母mRNA的正常降解以及独立于去腺苷酸化的脱帽mRNA的降解是必需的。这些结果表明,mRNA特异性的脱帽速率以及由此产生的降解速率,将源于DCP1脱帽酶与单个转录本相互作用的差异。