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一种通过突变型tRNA对移码突变进行表型抑制的新模型。

A new model for phenotypic suppression of frameshift mutations by mutant tRNAs.

作者信息

Qian Q, Li J N, Zhao H, Hagervall T G, Farabaugh P J, Björk G R

机构信息

Department of Microbiology, Umeå University, Sweden.

出版信息

Mol Cell. 1998 Mar;1(4):471-82. doi: 10.1016/s1097-2765(00)80048-9.

Abstract

According to the prevailing model, frameshift-suppressing tRNAs with an extra nucleotide in the anticodon loop suppress +1 frameshift mutations by recognizing a four-base codon and promoting quadruplet translocation. We present three sets of experiments that suggest a general alternative to this model. First, base modification should actually block such a four-base interaction by two classical frameshift suppressors. Second, for one Salmonella suppressor tRNA, it is not mutant tRNA but a structurally normal near cognate that causes the +1 shift in-frame. Finally, frameshifting occurs in competition with normal decoding of the next in-frame codon, consistent with an event that occurs in the ribosomal P site after the translocation step. These results suggest an alternative model involving peptidyl-tRNA slippage at the classical CCC-N and GGG-N frameshift suppression sites.

摘要

根据流行的模型,反密码子环中有一个额外核苷酸的移码抑制tRNA通过识别四碱基密码子并促进四联体易位来抑制+1移码突变。我们进行了三组实验,这些实验表明了该模型的一种普遍替代方案。首先,碱基修饰实际上应该会阻断两种经典移码抑制子的这种四碱基相互作用。其次,对于一种沙门氏菌抑制tRNA,导致框内+1移码的不是突变tRNA,而是结构正常的近同源tRNA。最后,移码发生在与下一个框内密码子的正常解码竞争中,这与易位步骤后核糖体P位点发生的事件一致。这些结果表明了一种替代模型,该模型涉及经典CCC-N和GGG-N移码抑制位点处的肽基-tRNA滑动。

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