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Rational Design of Aptamer-Tagged tRNAs

机译:适用于Aptamer标记的TRNA的理性设计

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Reprogramming of the genetic code system is limited by the difficulty in creating new tRNA structures. Here, I developed translationally active tRNA variants tagged with a small hairpin RNA aptamer, using Escherichia coli reporter assay systems. As the tRNA chassis for engineering, I employed amber suppressor variants of allo-tRNAs having the 9/3 composition of the 12-base pair amino-acid acceptor branch as well as a long variable arm (V-arm). Although their V-arm is a strong binding site for seryl-tRNA synthetase (SerRS), insertion of a bulge nucleotide in the V-arm stem region prevented allo-tRNA molecules from being charged by SerRS with serine. The SerRS-rejecting allo-tRNA chassis were engineered to have another amino-acid identity of either alanine, tyrosine, or histidine. The tip of the V-arms was replaced with diverse hairpin RNA aptamers, which were recognized by their cognate proteins expressed in E. coli . A high-affinity interaction led to the sequestration of allo-tRNA molecules, while a moderate-affinity aptamer moiety recruited histidyl-tRNA synthetase variants fused with the cognate protein domain. The new design principle for tRNA-aptamer fusions will enhance radical and dynamic manipulation of the genetic code.
机译:遗传密码系统的重新编程受到创造新的TRNA结构的困难。在这里,我使用大肠杆菌报告器测定系统开发了标记的具有小型发夹RNA适体标记的翻译活性的TRNA变体。作为工程的TRNA底盘,我使用具有9/3组合物的琥珀抑制器变体,其具有12/3组合物的12-碱基氨基酸受体分支以及长可变臂(V形臂)。虽然它们的V形臂是甲基-TRNA合成酶(SERRS)的强结合位点,但是在V形臂杆区域中插入凸出的核苷酸阻止通过丝氨酸的SERRS加入Allo-TRNA分子。拒绝allo-trna底盘的Serrs拒绝的Allo-Trna底盘具有丙氨酸,酪氨酸或组氨酸的另一种氨基酸同一性。 V形臂的尖端被不同的发夹RNA适体替换,其通过在大肠杆菌中表达的同源蛋白质识别。高亲和力相互作用导致了激素-TRNA分子的螯合,而中等亲和力适体部分征收与同源蛋白质结构域融合的组氨基-TRNA合成酶变体。 TRNA-Aptamer Fusions的新设计原理将增强遗传密码的激进和动态操纵。

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