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首页> 外文期刊>Nucleic acids research >A base pair at the bottom of the anticodon stem is reciprocally preferred for discrimination of cognate tRNAs by Escherichia coli lysyl- and glutaminyl-tRNA synthetases
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A base pair at the bottom of the anticodon stem is reciprocally preferred for discrimination of cognate tRNAs by Escherichia coli lysyl- and glutaminyl-tRNA synthetases

机译:相对地,反密码子茎底部的碱基对优选用于通过大肠杆菌的赖氨酰和谷氨酰胺基-tRNA合成酶来区分同源tRNA。

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Although the yeast amber suppressor tRNATyr is a good candidate for a carrier of unnatural amino acids into proteins, slight misacylation with lysine was found to occur in an Escherichia coli protein synthesis system. Although it was possible to restrain the mislysylation by genetically engineering the anticodon stem region of the amber suppressor tRNATyr, the mutant tRNA showing the lowest acceptance of lysine was found to accept a trace level of glutamine instead. Moreover, the glutamine-acceptance of various tRNATyr transcripts substituted at the anticodon stem region varied in reverse proportion to the lysine-acceptance, similar to a ‘seesaw'. The introduction of a C31–G39 base pair at the site was most effective for decreasing the lysine-acceptance and increasing the glutamine-acceptance. When the same substitution was introduced into E.coli tRNALys transcripts, the lysine-accepting activity was decreased by 100-fold and faint acceptance of glutamine was observed. These results may support the idea that there are some structural element(s) in the anticodon stem of tRNA, which are not shared by aminoacyl-tRNA synthetases that have similar recognition sites in the anticodon, such as E.coli lysyl- and glutaminyl-tRNA synthetases.
机译:尽管酵母琥珀抑制剂tRNA Tyr 是将非天然氨基酸带入蛋白质的良好候选者,但在大肠杆菌蛋白质合成系统中发现与赖氨酸的轻微错误酰化作用。尽管可以通过基因工程改造琥珀色抑制子tRNA Tyr 的反密码子茎区域来抑制错误融合,但发现赖氨酸接受度最低的突变体tRNA却接受了痕量的谷氨酰胺。此外,在反密码子茎区域被取代的各种tRNA Tyr 转录物的谷氨酰胺接受程度与赖氨酸接受程度成反比,类似于“跷跷板”。在该位点引入C31–G39碱基对最有效地降低了赖氨酸的接受度并增加了谷氨酰胺的接受度。当将相同的取代基引入大肠杆菌tRNA Lys 转录本时,赖氨酸的接受活性降低了100倍,并且观察到谷氨酰胺的模糊接受。这些结果可能支持以下想法:tRNA的反密码子茎中有一些结构元素,而在反密码子中具有相似识别位点的氨酰基-tRNA合成酶却不共有这些结构元素,例如大肠杆菌的赖氨酰和谷氨酰胺基- tRNA合成酶。

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