100年的RNA。信息RNA的钻石禧年

Q3 Medicine
Postepy biochemii Pub Date : 2021-07-16 Print Date: 2021-09-30 DOI:10.18388/pb.2021_393
Emilia Korczmar, Agnieszka Belter, Mirosława Naskręt-Barciszewska, Stefan Jurga, Jan Barciszewski
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引用次数: 0

摘要

2021年不仅标志着信使RNA和遗传密码被发现60周年。自从RNA被发现以来,已经过去了100年。值此特别纪念日之际,我们想回顾导致上述发现的核酸历史上最重要的事件。我们提醒人们,一个新的科学时代的开始,是由核蛋白和核酸的分离引起的,核酸的成分和性质逐渐被了解,通常是由鲜为人知的研究人员。RNA和DNA的区别以及对它们在细胞中出现的分析,使人们有可能得出关于这些化合物功能的第一个结论。关于DNA中含氮碱基比例的结论导致了对双螺旋结构的认识,引发了关于遗传信息传递本质的大量问题。随着mRNA的发现,这个问题的答案开始浮现,对编码氨基酸的前三个核苷酸的了解促使一个种族破译了遗传密码。上述发现是分子生物学的基础。钻石禧年恰逢针对SARS-CoV-2的基于mrna的疫苗的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
100 years of RNA. The Diamond Jubilee of Information RNA

The year 2021 marks not only 60 years since the discovery of messenger RNA and the genetic code. Already 100 yaers passed since RNA was discovered. On the occasion of this special anniversary, we would like to recall the most important events in the history of nucleic acids that led to the above discoveries. We remind the beginning of a new era in science caused by the isolation of nuclein and then nucleic acid, whose components and properties were gradually learned, often by little-known researchers. The distinction of RNA and DNA and the analysis of their occurrence in cells made it possible to formulate the first conclusions about the functions of these compounds. Conclusions on the ratio of nitrogenous bases in DNA led to the knowledge of the structure of the double helix, triggering an avalanche of questions about the essence of transmission of genetic information. Answers began to emerge with the discovery of mRNA, and knowledge of the first three nucleotides encoding an amino acid caused a race to decipher the genetic code. The above discoveries are the foundation of molecular biology. The diamond jubilee coincided with the development of an mRNA-based vaccine against the SARS-CoV-2.

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来源期刊
Postepy biochemii
Postepy biochemii Medicine-Medicine (all)
CiteScore
0.80
自引率
0.00%
发文量
36
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