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Variant ribosomal RNA alleles are conserved and exhibit tissue-specific expression

机译:变异的核糖体RNA等位基因被保守并表现出组织特异性表达

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摘要

The ribosome, the integration point for protein synthesis in the cell, is conventionally considered a homogeneous molecular assembly that only passively contributes to gene expression. Yet, epigenetic features of the ribosomal DNA (rDNA) operon and changes in the ribosome’s molecular composition have been associated with disease phenotypes, suggesting that the ribosome itself may possess inherent regulatory capacity. Analyzing whole-genome sequencing data from the 1000 Genomes Project and the Mouse Genomes Project, we find that rDNA copy number varies widely across individuals, and we identify pervasive intra- and interindividual nucleotide variation in the 5S, 5.8S, 18S, and 28S ribosomal RNA (rRNA) genes of both human and mouse. Conserved rRNA sequence heterogeneities map to functional centers of the assembled ribosome, variant rRNA alleles exhibit tissue-specific expression, and ribosomes bearing variant rRNA alleles are present in the actively translating ribosome pool. These findings provide a critical framework for exploring the possibility that the expression of genomically encoded variant rRNA alleles gives rise to physically and functionally heterogeneous ribosomes that contribute to mammalian physiology and human disease.
机译:核糖体是细胞中蛋白质合成的整合点,通常被认为是仅被动参与基因表达的均质分子组装。然而,核糖体DNA(rDNA)操纵子的表观遗传学特征和核糖体分子组成的变化与疾病表型有关,这表明核糖体本身可能具有固有的调节能力。分析来自1000个基因组计划和小鼠基因组计划的全基因组测序数据,我们发现rDNA拷贝数在个体之间差异很大,并且我们确定了5S,5.8S,18S和28S核糖体中普遍存在的个体内和个体间核苷酸变异。人和小鼠的RNA(rRNA)基因。保守的rRNA序列异质性映射到组装的核糖体的功能中心,变异的rRNA等位基因表现出组织特异性表达,并且在主动翻译的核糖体库中存在带有变异的rRNA等位基因的核糖体。这些发现为探索基因组编码的变异rRNA等位基因的表达引起物理和功能异质核糖体的可能性提供了关键框架,这些核糖体有助于哺乳动物的生理学和人类疾病。

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