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On the relationship between preferred termination codon contexts and nonsense suppression in human cells

机译:关于优选终止密码子上下文与人类细胞中的无意义抑制之间的关系

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The nucleotlde sequences 3′ to the translatlonal termination codons in a collection of human genes have been analysed for evidence of a preferred 3′ context for natural UAG codons. The aim was to see whether human UAG contexts can be related to the recent demonstration of the effects of 3′ context on nonsense suppression in human cells. Since mammalian genomes are known to consist of a patchwork of blocks of sequences or ‘isochores' with different G + C contents, the collection of genes was split into 5 classes containing genes with similar frequencies of G + C at the 3rd position of synonymous codons. This analysis revealed that the frequency of bases 3′ to UAG varies with the G + C frequency of the gene, and that these changes were mirrored by changes in the patterns of bases in GN and AGN strings. The Identity of the next 3′ base appears therefore to be determined by genome wide changes In G + C composition, rather than selection to maintain a particular tetranucleotide stop signal. These findings argue strongly that the failure to find bias in the patterns of bases used in human coding sequences is an insensitive guide for the existence of codon usage or codon context effects during translation in human cells.
机译:已经分析了人类基因集合中跨侧链终止密码子的核苷酸序列3',以寻找天然UAG密码子优选3'上下文的证据。目的是观察人类UAG语境是否可以与3'语境对人类细胞中无意义抑制作用的最新证明有关。由于已知哺乳动物基因组由不同G + C含量的序列块或“等位基因”的拼凑组成,因此将基因集合分为5个类别,在同义密码子的第3个位置包含具有类似G + C频率的基因。该分析表明,UAG的碱基3'的频率随基因的G + C频率而变化,并且这些变化反映了GN和AGN弦中碱基的模式变化。因此,下一个3'碱基的同一性似乎是由G + C组成的全基因组变化决定的,而不是由维持特定四核苷酸终止信号的选择决定的。这些发现强烈证明,未能在人类编码序列中使用的碱基模式中找到偏倚,是在人类细胞翻译过程中密码子使用或密码子上下文效应的存在的不灵敏指导。

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