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通过谷胱甘肽转移酶同源结构域与天冬氨酰-tRNA 合成酶之间的相互作用,在人多 tRNA 合成酶复合物中进行十聚体亚基的对称组装。

Symmetric Assembly of a Decameric Subcomplex in Human Multi-tRNA Synthetase Complex Via Interactions between Glutathione Transferase-Homology Domains and Aspartyl-tRNA Synthetase.

机构信息

School of Life Science and Biotechnology, KNU Creative BioResearch Group, Kyungpook National University, Daegu 41566, Republic of Korea.

Pohang Accelerator Laboratory, Pohang University of Science and Technology, 80 Jigokro-127-beongil, Nam-Gu, Pohang, Kyungbuk 37673, Republic of Korea.

出版信息

J Mol Biol. 2019 Nov 8;431(22):4475-4496. doi: 10.1016/j.jmb.2019.08.013. Epub 2019 Aug 29.

Abstract

Aminoacyl-tRNA synthetases (AARSs) ligate amino acids to their cognate tRNAs during protein synthesis. In humans, eight AARSs and three non-enzymatic AARS-interacting multifunctional proteins (AIMP1-3), which are involved in various biological processes, form a multi-tRNA synthetase complex (MSC). Elucidation of the structures and multiple functions of individual AARSs and AIMPs has aided current understanding of the structural arrangement of MSC components and their assembly processes. Here, we report the crystal structure of a complex comprising a motif from aspartyl-tRNA synthetase (DRS) and the glutathione transferase (GST)-homology domains of methionyl-tRNA synthetase (MRS), glutamyl-prolyl-tRNA synthetase (EPRS), AIMP2, and AIMP3. In the crystal structure, the four GST domains are assembled in the order of MRS-AIMP3-EPRS-AIMP2, and the GST domain of AIMP2 binds DRS through the β-sheet in the GST domain. The C-terminus of AIMP3 enhances the binding of DRS to the tetrameric GST complex. A DRS dimer and two GST tetramers binding to the dimer with 2-fold symmetry complete a decameric complex. The formation of this complex enhances the stability of DRS and enables it to retain its reaction intermediate, aspartyl adenylate. Since the catalytic domains of MRS and EPRS are connected to the decameric complex through their flexible linker peptides, and lysyl-tRNA synthetase and AIMP1 are also linked to the complex via the N-terminal region of AIMP2, the DRS-GST tetramer complex functions as a frame in the MSC.

摘要

氨酰-tRNA 合成酶(AARSs)在蛋白质合成过程中将氨基酸连接到其对应的 tRNA 上。在人类中,八个 AARSs 和三个非酶 AARS 相互作用的多功能蛋白(AIMP1-3)参与各种生物过程,形成一个多 tRNA 合成酶复合物(MSC)。阐明单个 AARSs 和 AIMPs 的结构和多种功能,有助于当前理解 MSC 成分的结构排列及其组装过程。在这里,我们报告了一个由天冬氨酰-tRNA 合成酶(DRS)的基序和甲硫氨酰-tRNA 合成酶(MRS)、谷氨酰-脯氨酰-tRNA 合成酶(EPRS)、AIMP2 和 AIMP3 的谷胱甘肽转移酶(GST)同源结构域组成的复合物的晶体结构。在晶体结构中,四个 GST 结构域按 MRS-AIMP3-EPRS-AIMP2 的顺序组装,AIMP2 的 GST 结构域通过 GST 结构域中的β-折叠与 DRS 结合。AIMP3 的 C 末端增强了 DRS 与四聚体 GST 复合物的结合。一个 DRS 二聚体和两个 GST 四聚体与二聚体以 2 重对称结合形成一个十聚体复合物。该复合物的形成增强了 DRS 的稳定性,并使其能够保留其反应中间体天冬酰基腺苷酸。由于 MRS 和 EPRS 的催化结构域通过其柔性连接肽与十聚体复合物相连,而赖氨酸-tRNA 合成酶和 AIMP1 也通过 AIMP2 的 N 端区域与复合物相连,因此 DRS-GST 四聚体复合物作为 MSC 的一个框架发挥作用。

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