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首页> 外文期刊>Science >SWITCHING RECOGNITION OF TWO TRNA SYNTHETASES WITH AN AMINO ACID SWAP IN A DESIGNED PEPTIDE
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SWITCHING RECOGNITION OF TWO TRNA SYNTHETASES WITH AN AMINO ACID SWAP IN A DESIGNED PEPTIDE

机译:设计肽中氨基酸交换的两种TRNA合成酶的开关识别

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摘要

The genetic code is based on specific interactions between transfer RNA (tRNA) synthetases and their cognate tRNAs. The anticodons for methionine and isoleucine tRNAs differ by a single nucleotide, and changing this nucleotide in an isoleucine tRNA is sufficient to change aminoacylation specificity to methionine. Results of combinatorial mutagenesis of an anticodon-binding-helix loop peptide were used to design a hybrid sequence composed of amino acid residues from methionyl- and isoleucyl-tRNA synthetases. When the hybrid sequence was transplanted into isoleucyl-tRNA synthetase, active enzyme was generated in vivo and in vitro. The transplanted peptide did not confer function to methionyl-tRNA synthetase, but the substitution of a single amino acid within the transplanted peptide conferred methionylation and prevented isoleucylation. Thus, the swap of a single amino acid in the transplanted peptide switches specificity between anticodons that differ by one nucleotide.
机译:遗传密码基于转移RNA(tRNA)合成酶与其同源tRNA之间的特异性相互作用。蛋氨酸和异亮氨酸tRNA的反密码子只有一个核苷酸不同,改变异亮氨酸tRNA中的该核苷酸足以改变对蛋氨酸的氨基酰化特异性。使用反密码子结合螺旋环肽的组合诱变结果来设计杂合序列,该杂合序列由甲硫酰基和异亮氨酰-tRNA合成酶的氨基酸残基组成。当将杂合序列移植到异亮氨酰-tRNA合成酶中时,在体内和体外产生活性酶。移植的肽没有赋予甲硫氨酰-tRNA合成酶功能,但是在移植的肽内单个氨基酸的取代赋予了甲硫酰化作用并阻止了异亮氨酰化。因此,移植肽中单个氨基酸的交换可在相差一个核苷酸的反密码子之间切换特异性。

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