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RNA剪接内切核酸酶的结构、功能与进化的最新见解

Recent Insights Into the Structure, Function, and Evolution of the RNA-Splicing Endonucleases.

作者信息

Hirata Akira

机构信息

Department of Materials Science and Biotechnology, Graduate School of Science and Engineering, Ehime University, Matsuyama, Japan.

出版信息

Front Genet. 2019 Feb 12;10:103. doi: 10.3389/fgene.2019.00103. eCollection 2019.

Abstract

RNA-splicing endonuclease (EndA) cleaves out introns from archaeal and eukaryotic precursor (pre)-tRNA and is essential for tRNA maturation. In archaeal EndA, the molecular mechanisms underlying complex assembly, substrate recognition, and catalysis have been well understood. Recently, certain studies have reported novel findings including the identification of new subunit types in archaeal EndA structures, providing insights into the mechanism underlying broad substrate specificity. Further, metagenomics analyses have enabled the acquisition of numerous DNA sequences of EndAs and intron-containing pre-tRNAs from various species, providing information regarding the co-evolution of substrate specificity of archaeal EndAs and tRNA genetic diversity, and the evolutionary pathway of archaeal and eukaryotic EndAs. Although the complex structure of the heterothermic form of eukaryotic EndAs is unknown, previous reports regarding their functions indicated that mutations in human EndA cause neurological disorders including pontocerebellar hypoplasia and progressive microcephaly, and yeast EndA significantly cleaves mitochondria-localized mRNA encoding cytochrome b mRNA processing 1 (Cpb1) for mRNA maturation. This mini-review summarizes the aforementioned results, discusses their implications, and offers my personal opinion regarding future directions for the analysis of the structure and function of EndAs.

摘要

RNA剪接内切核酸酶(EndA)从古细菌和真核生物前体(pre)-tRNA中切割去除内含子,是tRNA成熟所必需的。在古细菌EndA中,复合物组装、底物识别和催化的分子机制已得到充分了解。最近,一些研究报告了新的发现,包括在古细菌EndA结构中鉴定出新的亚基类型,为广泛底物特异性的潜在机制提供了见解。此外,宏基因组学分析使得能够从各种物种中获取大量EndA和含内含子的pre-tRNA的DNA序列,提供了有关古细菌EndA底物特异性与tRNA遗传多样性共同进化以及古细菌和真核生物EndA进化途径的信息。尽管真核生物EndA的异源热形式的复杂结构尚不清楚,但先前关于其功能的报告表明,人类EndA中的突变会导致包括脑桥小脑发育不全和进行性小头畸形在内的神经系统疾病,并且酵母EndA会显著切割线粒体定位的编码细胞色素b mRNA加工1(Cpb1)的mRNA以促进mRNA成熟。这篇小型综述总结了上述结果,讨论了它们的意义,并就EndA结构和功能分析的未来方向提出了个人观点。

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