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Ribosome Stacking Defines CGS1 mRNA Degradation Sites During Nascent Peptide-Mediated Translation Arrest

机译:核糖体堆积定义新生肽介导的翻译逮捕期间CGS1 mRNA降解位点。

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摘要

Expression of the Arabidopsis CGS1 gene that codes for cystathionine γ-synthase is feedback-regulated at the step of mRNA degradation in response to S-adenosyl-l-methionine (AdoMet). This regulation occurs during translation and involves AdoMet-induced temporal translation arrest prior to the mRNA degradation. Here, we have identified multiple intermediates of CGS1 mRNA degradation with different 5′ ends that are separated by approximately 30 nucleotides. Longer intermediates were found to be produced as the number of ribosomes loaded on mRNA was increased. Sucrose density gradient centrifugation experiments showed that the shortest mRNA degradation intermediate was associated with monosomes, whereas longer degradation intermediates were associated with multiple ribosomes. Immunoblot analyses revealed a ladder of premature polypeptides whose molecular weights corresponded to products of ribosomes in a stalled stack. An increase in smaller premature polypeptides was observed as the number of ribosomes loaded on mRNA increased. These results show that AdoMet induces the stacking of ribosomes on CGS1 mRNA and that multiple mRNA degradation sites probably correspond to each stacked ribosome.
机译:响应于S-腺苷-1-甲硫氨酸(AdoMet),在mRNA降解的步骤中反馈调节编码胱硫醚γ-合酶的拟南芥CGS1基因的表达。这种调节发生在翻译过程中,涉及在mRNA降解之前AdoMet诱导的暂时性翻译停滞。在这里,我们已经确定了CGS1 mRNA降解的多个中间体,它们的中间5'端相距约30个核苷酸。随着装载在mRNA上的核糖体数量的增加,发现产生了更长的中间体。蔗糖密度梯度离心实验表明,最短的mRNA降解中间体与单核糖体相关,而更长的降解中间体与多个核糖体相关。免疫印迹分析显示一梯子的过早多肽,其分子量对应于停滞堆栈中核糖体的产物。随着mRNA上核糖体数量的增加,观察到较小的过早多肽增加。这些结果表明,AdoMet诱导CGS1 mRNA上核糖体的堆积,并且多个mRNA降解位点可能对应于每个堆积的核糖体。

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