平移移码
终止密码子
生物
遗传学
翻译(生物学)
核糖体
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移码突变
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转移RNA
信使核糖核酸
基因
突变
核糖核酸
肽序列
作者
Alexei Lobanov,Stephen M. Heaphy,Anton A. Turanov,Maxim V. Gerashchenko,Sandra Pucciarelli,Raghul Rajan Devaraj,Fang Xie,Vladislav Petyuk,Richard Smith,Lawrence A. Klobutcher,John F. Atkins,Cristina Miceli,Dolph L. Hatfield,Pavel V. Baranov,Vadim N. Gladyshev
摘要
Large-scale sequencing approaches reveal that the genetic code of Euplotes ciliates supports widespread ribosomal frameshifting at stop codons, and that additional mechanisms are required for efficient translation termination. The ribosome can change its reading frame during translation in a process known as programmed ribosomal frameshifting. These rare events are supported by complex mRNA signals. However, we found that the ciliates Euplotes crassus and Euplotes focardii exhibit widespread frameshifting at stop codons. 47 different codons preceding stop signals resulted in either +1 or +2 frameshifts, and +1 frameshifting at AAA was the most frequent. The frameshifts showed unusual plasticity and rapid evolution, and had little influence on translation rates. The proximity of a stop codon to the 3′ mRNA end, rather than its occurrence or sequence context, appeared to designate termination. Thus, a 'stop codon' is not a sufficient signal for translation termination, and the default function of stop codons in Euplotes is frameshifting, whereas termination is specific to certain mRNA positions and probably requires additional factors.
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