Department of Structural Biology, Weizmann Institute of Science, Rehovot 76100, Israel.
Protein Sci. 2011 Jan;20(1):160-7. doi: 10.1002/pro.549.
The crystal structure of Phenylalanyl-tRNA synthetase from E. coli (EcPheRS), a class II aminoacyl-tRNA synthetase, complexed with phenylalanine and AMP was determined at 3.05 Å resolution. EcPheRS is a (αβ)₂ heterotetramer: the αβ heterodimer of EcPheRS consists of 11 structural domains. Three of them: the N-terminus, A1 and A2 belong to the α-subunit and B1-B8 domains to the β subunit. The structure of EcPheRS revealed that architecture of four helix-bundle interface, characteristic of class IIc heterotetrameric aaRSs, is changed: each of the two long helices belonging to CLM transformed into the coil-short helix structural fragments. The N-terminal domain of the α-subunit in EcPheRS forms compact triple helix domain. This observation is contradictory to the structure of the apo form of TtPheRS, where N-terminal domain was not detected in the electron density map. Comparison of EcPheRS structure with TtPheRS has uncovered significant rearrangements of the structural domains involved in tRNA(Phe) binding/translocation. As it follows from modeling experiments, to achieve a tighter fit with anticodon loop of tRNA, a shift of ∼5 Å is required for C-terminal domain B8, and of ∼6 to 7 Å for the whole N terminus. EcPheRSs have emerged as an important target for the incorporation of novel amino acids into genetic code. Further progress in design of novel compounds is anticipated based on the structural data of EcPheRS.
大肠杆菌苯丙氨酰-tRNA 合成酶(EcPheRS)的晶体结构与苯丙氨酸和 AMP 复合物,分辨率为 3.05Å。EcPheRS 是一种(αβ)₂ 异源二聚体:EcPheRS 的 αβ 异源二聚体由 11 个结构域组成。其中三个结构域:N 端、A1 和 A2 属于α亚基,B1-B8 结构域属于β亚基。EcPheRS 的结构表明,属于 IIc 类异源四聚体 aaRSs 的四个螺旋束界面的结构发生了变化:属于 CLM 的两条长螺旋中的每一条都转化为螺旋-短螺旋结构片段。EcPheRS 的α亚基的 N 端结构域形成紧凑的三螺旋结构域。这一观察结果与 TtPheRS 的无配体形式的结构相矛盾,在无配体形式的结构中,电子密度图中未检测到 N 端结构域。EcPheRS 结构与 TtPheRS 的比较揭示了参与 tRNA(Phe)结合/易位的结构域的显著重排。正如建模实验所表明的,为了与 tRNA 的反密码环更紧密地匹配,C 端结构域 B8 需要约 5Å 的移动,整个 N 端需要约 6 到 7Å 的移动。EcPheRS 已成为将新型氨基酸掺入遗传密码的重要靶标。预计进一步基于 EcPheRS 的结构数据设计新型化合物会取得进展。