Transcontrol of cardiac mRNA translation in a protein length-dependent fashion

crossref(2020)

引用 0|浏览2
暂无评分
摘要
Little is known about the impact of naturally occurring genetic variation on the rates with which proteins are synthesized by ribosomes. Here, we investigate how genetic influences on mRNA translational efficiency are associated with complex disease phenotypes using a panel of rat recombinant inbred lines. We identify a locus for cardiac hypertrophy that is associated with a translatome-wide and protein length-dependent shift in translational efficiency. This master regulator primarily affects the translation of very short and very long protein-coding sequences, altering the physiological stoichiometric translation rates of sarcomere proteins. Mechanistic dissection of this locus points to altered ribosome assembly, characterized by accumulation of polysome half-mers, changed ribosomal configurations and misregulation of the small nucleolar RNASNORA48. We postulate that this locus enhances a pre-existing negative correlation between protein length and translation initiation in diseased hearts. Our work shows that a single genomic locus can trigger a complex, translation-driven molecular mechanism that contributes to phenotypic variability between individuals.Graphical AbstractHighlightsGenetic variability impacts protein synthesis rates in a rat model for cardiac hypertrophyAtranslocus affects stoichiometric translation rates of cardiac sarcomeric proteinsThis master regulator locus induces a global, protein length-dependent shift in translationDysregulated ribosome assembly induces half-mer formation and affects translation initiation rate
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要