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Structural basis for recognition of cognate tRNA by tyrosyl-tRNA synthetase from three kingdoms

机译:三个王国的酪氨酰-tRNA合成酶识别同源tRNA的结构基础

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摘要

The specific aminoacylation of tRNA by tyrosyl-tRNA synthetases (TyrRSs) relies on the identity determinants in the cognate tRNATyrs. We have determined the crystal structure of Saccharomyces cerevisiae TyrRS (SceTyrRS) complexed with a Tyr-AMP analog and the native tRNATyr(GΨA). Structural information for TyrRS–tRNATyr complexes is now full-line for three kingdoms. Because the archaeal/eukaryotic TyrRSs–tRNATyrs pairs do not cross-react with their bacterial counterparts, the recognition modes of the identity determinants by the archaeal/eukaryotic TyrRSs were expected to be similar to each other but different from that by the bacterial TyrRSs. Interestingly, however, the tRNATyr recognition modes of SceTyrRS have both similarities and differences compared with those in the archaeal TyrRS: the recognition of the C1-G72 base pair by SceTyrRS is similar to that by the archaeal TyrRS, whereas the recognition of the A73 by SceTyrRS is different from that by the archaeal TyrRS but similar to that by the bacterial TyrRS. Thus, the lack of cross-reactivity between archaeal/eukaryotic and bacterial TyrRS-tRNATyr pairs most probably lies in the different sequence of the last base pair of the acceptor stem (C1-G72 vs G1-C72) of tRNATyr. On the other hand, the recognition mode of Tyr-AMP is conserved among the TyrRSs from the three kingdoms.
机译:酪氨酰-tRNA合成酶(TyrRS)对tRNA的特异性氨酰化依赖于相关tRNATyrs中的身份决定因素。我们已经确定了与Tyr-AMP类似物和天然tRNATyr(GΨA)复合的啤酒酵母TyrRS(SceTyrRS)的晶体结构。现在,三个王国的TyrRS–tRNATyr复合物的结构信息全线显示。由于古细菌/真核生物TyrRSs–tRNATyrs对不会与其细菌对应物发生交叉反应,因此,古细菌/真核生物TyrRSs对身份决定簇的识别方式预计彼此相似,但与细菌TyrRSs不同。然而,有趣的是,SceTyrRS的tRNATyr识别模式与古细菌TyrRS相比既有相同之处,也有区别:SceTyrRS对C1-G72碱基对的识别与古细菌TyrRS相似,而对A73的识别却与古细菌TyrRS相似。 SceTyrRS与古细菌TyrRS不同,但与细菌TyrRS相似。因此,古细菌/真核生物和细菌TyrRS-tRNATyr对之间缺乏交叉反应性很可能在于tRNATyr受体茎最后一个碱基对的不同序列(C1-G72与G1-C72)。另一方面,在来自三个王国的TyrRS之间保守了Tyr-AMP的识别模式。

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