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Modification of orthogonal tRNAs: unexpected consequences for sense codon reassignment

机译:正交tRNA的修饰:有义密码子重分配的意外结果

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摘要

Breaking the degeneracy of the genetic code via sense codon reassignment has emerged as a way to incorporate multiple copies of multiple non-canonical amino acids into a protein of interest. Here, we report the modification of a normally orthogonal tRNA by a host enzyme and show that this adventitious modification has a direct impact on the activity of the orthogonal tRNA in translation. We observed nearly equal decoding of both histidine codons, CAU and CAC, by an engineered orthogonal M. jannaschii tRNA with an AUG anticodon: tRNAOpt. We suspected a modification of the tRNAOptAUG anticodon was responsible for the anomalous lack of codon discrimination and demonstrate that adenosine 34 of tRNAOptAUG is converted to inosine. We identified tRNAOptAUG anticodon loop variants that increase reassignment of the histidine CAU codon, decrease incorporation in response to the histidine CAC codon, and improve cell health and growth profiles. Recognizing tRNA modification as both a potential pitfall and avenue of directed alteration will be important as the field of genetic code engineering continues to infiltrate the genetic codes of diverse organisms.
机译:通过有义密码子重新分配打破遗传密码的简并性已经作为将多种非规范氨基酸的多个拷贝掺入目标蛋白质的一种方式出现。在这里,我们报告了宿主酶对正常正交tRNA的修饰,并表明这种偶然修饰直接影响了正交tRNA在翻译中的活性。我们观察到,带有AUG反密码子的经工程改造的詹氏甲烷八叠球菌tRNA,tRNA Opt 对组氨酸密码子CAU和CAC的解码几乎相等。我们怀疑对tRNA Opt AUG反密码子的修饰是导致密码子识别异常缺失的原因,并证明tRNA Opt AUG的腺苷34转化为肌苷。我们鉴定了tRNA Opt AUG反密码子环变体,该变体增加了组氨酸CAU密码子的重新分配,减少了对组氨酸CAC密码子的响应并改善了细胞健康和生长特性。随着遗传密码工程领域不断渗透各种生物的遗传密码,将tRNA修饰识别为潜在的陷阱和定向改变的途径将是重要的。

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