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通过非脱腺苷依赖的脱帽作用进行靶向mRNA降解。

Targeted mRNA degradation by deadenylation-independent decapping.

作者信息

Badis Gwenael, Saveanu Cosmin, Fromont-Racine Micheline, Jacquier Alain

机构信息

Génétique des Interactions Macromoléculaires, Institut Pasteur, 25, Rue du Docteur Roux, 75724 Paris cedex 15, France.

出版信息

Mol Cell. 2004 Jul 2;15(1):5-15. doi: 10.1016/j.molcel.2004.06.028.

Abstract

Modulating the rate of mRNA degradation is a fast and efficient way to control gene expression. In a yeast strain deleted of EDC3, a component of the decapping machinery conserved in eukaryotes, the transcript coding the ribosomal protein Rps28b is specifically stabilized, as demonstrated by microarray and time course experiments. This stabilization results from the loss of RPS28B autoregulation, which occurs at the level of mRNA decay. Using mutants of the major deadenylase, we show that this regulation occurs at the level of decapping and bypasses deadenylation. Rps28b interacts with a conserved hairpin structure within the 3'UTR of its own mRNA and with components of the decapping machinery, including Edc3. We conclude that Rps28b, in the presence of Edc3, directly recruits the decapping machinery on its own mRNA. These findings show that specific modulation of the decapping efficiency on natural transcripts can control mRNA turnover.

摘要

调节mRNA降解速率是控制基因表达的一种快速有效的方式。在缺失了真核生物中保守的脱帽机制组分EDC3的酵母菌株中,编码核糖体蛋白Rps28b的转录本被特异性地稳定下来,这已通过微阵列和时间进程实验得到证明。这种稳定化是由于RPS28B自身调节的丧失导致的,这种自身调节发生在mRNA降解水平。利用主要去腺苷酸化酶的突变体,我们表明这种调节发生在脱帽水平并且绕过了去腺苷酸化。Rps28b与其自身mRNA的3'UTR内的一个保守发夹结构以及包括Edc3在内 的脱帽机制组分相互作用。我们得出结论,在Edc3存在的情况下,Rps28b直接将脱帽机制招募到其自身的mRNA上。这些发现表明,对天然转录本脱帽效率的特异性调节可以控制mRNA的周转。

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