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慢翻译密码子簇的组合可以增加.mRNA 的半衰期。

Combinations of slow-translating codon clusters can increase mRNA half-life in .

机构信息

Department of Physics, Indian Institute of Technology, Jammu 181 221, India;

Department of Chemistry, Pennsylvania State University, University Park, PA 16802.

出版信息

Proc Natl Acad Sci U S A. 2021 Dec 21;118(51). doi: 10.1073/pnas.2026362118.

Abstract

The presence of a single cluster of nonoptimal codons was found to decrease a transcript's half-life through the interaction of the ribosome-associated quality control machinery with stalled ribosomes in The impact of multiple nonoptimal codon clusters on a transcript's half-life, however, is unknown. Using a kinetic model, we predict that inserting a second nonoptimal cluster near the 5' end can lead to synergistic effects that increase a messenger RNA's (mRNA's) half-life in Specifically, the 5' end cluster suppresses the formation of ribosome queues, reducing the interaction of ribosome-associated quality control factors with stalled ribosomes. We experimentally validate this prediction by introducing two nonoptimal clusters into three different genes and find that their mRNA half-life increases up to fourfold. The model also predicts that in the presence of two clusters, the cluster closest to the 5' end is the primary determinant of mRNA half-life. These results suggest the "translational ramp," in which nonoptimal codons are located near the start codon and increase translational efficiency, may have the additional biological benefit of allowing downstream slow-codon clusters to be present without decreasing mRNA half-life. These results indicate that codon usage bias plays a more nuanced role in controlling cellular protein levels than previously thought.

摘要

研究发现,单个非最优密码子簇的存在会通过核糖体相关质量控制机制与核糖体停滞的相互作用,降低转录本的半衰期。然而,多个非最优密码子簇对转录本半衰期的影响尚不清楚。我们使用动力学模型预测,在 5' 端附近插入第二个非最优簇可能会导致协同效应,从而增加信使 RNA(mRNA)的半衰期。具体来说,5' 端簇抑制核糖体队列的形成,减少核糖体相关质量控制因子与核糖体停滞的相互作用。我们通过在三个不同的基因中引入两个非最优簇来验证这一预测,并发现它们的 mRNA 半衰期增加了四倍。该模型还预测,在存在两个簇的情况下,最靠近 5' 端的簇是决定 mRNA 半衰期的主要因素。这些结果表明,“翻译斜坡”(其中非最优密码子位于起始密码子附近,可提高翻译效率)可能具有额外的生物学益处,允许存在下游慢密码子簇而不会降低 mRNA 半衰期。这些结果表明,密码子使用偏好在控制细胞蛋白质水平方面的作用比之前认为的更为复杂。

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