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Three Tetrahymena tRNA(Gln) isoacceptors as tools for studying unorthodox codon recognition and codon context effects during protein synthesis in vitro.

机译:三个四膜虫tRNA(Gln)异构体作为研究蛋白质合成过程中非正统密码子识别和密码子上下文效应的工具。

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摘要

Three glutamine tRNA isoacceptors are known in Tetrahymena thermophila. One of these has the anticodon UmUG which reads the two normal glutamine codons CAA and CAG, whereas the two others with CUA and UmUA anticodons recognize UAG and UAA, respectively, which serve as termination codons in other organisms. We have employed these tRNA(Gln)-isoacceptors as tools for studying unconventional base interactions in a mRNA- and tRNA-dependent wheat germ extract. We demonstrate here (i) that tRNA(Gln)UmUG suppresses the UAA as well as the UAG stop codon, involving a single G:U wobble pair at the third anticodon position and two simultaneous wobble base pairings at the first and third position, respectively, and (ii) that tRNA(Gln)CUA, in addition to its cognate codon UAG, reads the UAA stop codon which necessitates a C:A mispairing in the first anticodon position. These unorthodox base interactions take place in a codon context which favours readthrough in tobacco mosaic virus (TMV) or tobacco rattle virus (TRV) RNA, but are not observed in a context that terminates zein and globin protein synthesis. Furthermore, our data reveal that wobble or mispairing in the middle position of anticodon-codon interactions is precluded in either context. The suppressor activities of tRNAs(Gln) are compared with those of other known naturally occurring suppressor tRNAs, i.e., tRNA(Tyr)G psi A and tRNA(Trp)CmCA. Our results indicate that a 'leaky' context is neither restricted to a single stop codon nor to a distinct tRNA species.
机译:在嗜热四膜菌中已知三种谷氨酰胺tRNA同型受体。其中一个具有反密码子UmUG,该密码子读取两个正常的谷氨酰胺密码子CAA和CAG,而其他两个带有CUA和UmUA反密码子的密码子分别识别UAG和UAA,它们在其他生物中用作终止密码子。我们已经使用这些tRNA(Gln)-isoceptor作为研究依赖于mRNA和tRNA的小麦胚芽提取物中非常规碱基相互作用的工具。我们在这里证明(i)tRNA(Gln)UmUG抑制UAA以及UAG终止密码子,在第三个反密码子位置包含一个G:U摆动对,在第一个和第三个位置分别包含两个同时的摆动碱基对。 ;以及(ii)tRNA(Gln)CUA除了其同源密码子UAG之外,还读取了UAA终止密码子,这需要在第一个反密码子位置进行C:A错配。这些非正统的碱基相互作用发生在密码子环境中,有利于通透烟草花叶病毒(TMV)或烟草摇铃病毒(TRV)RNA,但在终止玉米醇溶蛋白和球蛋白合成的环境中未观察到。此外,我们的数据表明,在任何一种情况下都可以避免在反密码子-密码子相互作用的中间位置出现摆动或配对错误。将tRNA(Gln)的抑制活性与其他已知的天然抑制性tRNA,即tRNA(Tyr)G psi A和tRNA(Trp)CmCA进行比较。我们的结果表明,“泄漏”上下文既不限于单个终止密码子也不限于不同的tRNA种类。

著录项

  • 作者

    Schüll, C; Beier, H;

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  • 年度 1994
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  • 原文格式 PDF
  • 正文语种 en
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