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首页> 外文期刊>The Journal of Nutrition: Official Organ of the American Institute of Nutrition >Role of Precursor mRNA Splicing in Nutrient-Induced Alterations in Gene Expression and Metabolism
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Role of Precursor mRNA Splicing in Nutrient-Induced Alterations in Gene Expression and Metabolism

机译:前体mRNA剪接在营养诱导的基因表达和代谢变化中的作用

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摘要

Precursor mRNA (pre-mRNA) splicing is a critical step in gene expression that results in the removal of intronic sequences from immature mRNA, leading to the production of mature mRNA that can be translated into protein. Alternative pre-mRNA splicing is the process whereby alternative exons and/or introns are selectively included or excluded, generating mature mRNAs that encode proteins that may differ in function. The resulting alterations in the pattern of protein isoform expression can result in changes in protein–protein interaction, subcellular localization, and flux through metabolic pathways. Although basic mechanisms of pre-mRNA splicing of introns and exons are reasonably well characterized, how these mechanisms are regulated remains poorly understood. The goal of this review is to highlight selected recent advances in our understanding of the regulation of pre-mRNA splicing by nutrients and modulation of nutrient metabolism that result from changes in pre-mRNA splicing.
机译:前体mRNA(pre-mRNA)剪接是基因表达中的关键步骤,该步骤导致从未成熟的mRNA中去除内含子序列,从而导致可翻译为蛋白质的成熟mRNA的产生。替代性的mRNA前期剪接是选择性地包括或排除替代性外显子和/或内含子,从而生成编码功能可能不同的蛋白质的成熟mRNA的过程。蛋白质同工型表达模式的改变可能导致蛋白质间相互作用,亚细胞定位以及通过代谢途径的通量发生变化。尽管对内含子和外显子进行mRNA剪接的基本机制已得到很好的表征,但如何调节这些机制仍知之甚少。这篇综述的目的是在我们对营养素对前mRNA剪接的调控以及由于前mRNA剪接的变化而引起的营养代谢调节方面的理解中突出一些最新进展。

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