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人类细胞中的核糖体前 RNA 加工:从机制到先天性疾病。

Pre-Ribosomal RNA Processing in Human Cells: From Mechanisms to Congenital Diseases.

机构信息

Laboratoire de Biologie Moléculaire Eucaryote, Centre de Biologie Intégrative (CBI), Université de Toulouse, CNRS, UPS, 31000 Toulouse, France.

出版信息

Biomolecules. 2018 Oct 24;8(4):123. doi: 10.3390/biom8040123.

Abstract

Ribosomal RNAs, the most abundant cellular RNA species, have evolved as the structural scaffold and the catalytic center of protein synthesis in every living organism. In eukaryotes, they are produced from a long primary transcript through an intricate sequence of processing steps that include RNA cleavage and folding and nucleotide modification. The mechanisms underlying this process in human cells have long been investigated, but technological advances have accelerated their study in the past decade. In addition, the association of congenital diseases to defects in ribosome synthesis has highlighted the central place of ribosomal RNA maturation in cell physiology regulation and broadened the interest in these mechanisms. Here, we give an overview of the current knowledge of pre-ribosomal RNA processing in human cells in light of recent progress and discuss how dysfunction of this pathway may contribute to the physiopathology of congenital diseases.

摘要

核糖体 RNA 是细胞内含量最丰富的 RNA 种类,作为结构支架和蛋白质合成的催化中心在所有生物中都得到了进化。在真核生物中,它们由一个长的初级转录物通过一系列复杂的加工步骤产生,包括 RNA 切割和折叠以及核苷酸修饰。人类细胞中这一过程的机制长期以来一直受到研究,但过去十年技术的进步加速了对其的研究。此外,先天性疾病与核糖体合成缺陷的关联突出了核糖体 RNA 成熟在细胞生理学调节中的核心地位,并扩大了人们对这些机制的兴趣。在这里,我们根据最近的进展综述了人类细胞中前核糖体 RNA 加工的现有知识,并讨论了该途径的功能障碍如何导致先天性疾病的病理生理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba5d/6315592/6e316e673a8b/biomolecules-08-00123-g001.jpg

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