mRNA 上下文和翻译因子决定着替代性核遗传密码的解码。

IF 3.2 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
BioEssays Pub Date : 2024-05-09 DOI:10.1002/bies.202400058
Ali Salman, Nikita Biziaev, Ekaterina Shuvalova, Elena Alkalaeva
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引用次数: 0

摘要

遗传密码是决定如何将遗传物质中的信息转化为氨基酸的一组指令。一般来说,从病毒和细菌到人类,它对所有生物都是通用的。然而,在过去几十年中,在原核生物和真核生物中都发现了这一规则的例外情况。在这篇综述中,我们讨论了 16 种已描述的替代真核生物核遗传密码,并观察了它们在进化过程中出现的理论。我们考虑了允许密码子重新配置的可能分子机制。在核遗传密码中,大多数重配都是针对终止密码子的。此外,在一些生物中,终止密码子可以同时编码氨基酸和作为终止信号。在这种情况下,密码子的含义由三联体以外的其他因素决定。通过对核基因组中各种非标准编码事件的全面回顾,我们对真核生物的翻译机制有了新的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

mRNA context and translation factors determine decoding in alternative nuclear genetic codes

mRNA context and translation factors determine decoding in alternative nuclear genetic codes

mRNA context and translation factors determine decoding in alternative nuclear genetic codes

The genetic code is a set of instructions that determine how the information in our genetic material is translated into amino acids. In general, it is universal for all organisms, from viruses and bacteria to humans. However, in the last few decades, exceptions to this rule have been identified both in pro- and eukaryotes. In this review, we discuss the 16 described alternative eukaryotic nuclear genetic codes and observe theories of their appearance in evolution. We consider possible molecular mechanisms that allow codon reassignment. Most reassignments in nuclear genetic codes are observed for stop codons. Moreover, in several organisms, stop codons can simultaneously encode amino acids and serve as termination signals. In this case, the meaning of the codon is determined by the additional factors besides the triplets. A comprehensive review of various non-standard coding events in the nuclear genomes provides a new insight into the translation mechanism in eukaryotes.

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来源期刊
BioEssays
BioEssays 生物-生化与分子生物学
CiteScore
7.30
自引率
2.50%
发文量
167
审稿时长
4-8 weeks
期刊介绍: molecular – cellular – biomedical – physiology – translational research – systems - hypotheses encouraged BioEssays is a peer-reviewed, review-and-discussion journal. Our aims are to publish novel insights, forward-looking reviews and commentaries in contemporary biology with a molecular, genetic, cellular, or physiological dimension, and serve as a discussion forum for new ideas in these areas. An additional goal is to encourage transdisciplinarity and integrative biology in the context of organismal studies, systems approaches, through to ecosystems, where appropriate.
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