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PMID: 25288775 Published · ppublish English

Structure of the ArgRS-GlnRS-AIMP1 complex and its implications for mammalian translation.

Fu Yaoyao, Kim Youngran, Jin Kyeong Sik, Kim Hyun Sook, Kim Jong Hyun, Wang DongMing, Park Minyoung, Jo Chang Hwa, Kwon Nam Hoon, Kim Doyeun, Kim Myung Hee, Jeon Young Ho, Hwang Kwang Yeon, Kim Sunghoon, Cho Yunje

Abstract

In higher eukaryotes, one of the two arginyl-tRNA synthetases (ArgRSs) has evolved to have an extended N-terminal domain that plays a crucial role in protein synthesis and cell growth and in integration into the multisynthetase complex (MSC). Here, we report a crystal structure of the MSC subcomplex comprising ArgRS, glutaminyl-tRNA synthetase (GlnRS), and the auxiliary factor aminoacyl tRNA synthetase complex-interacting multifunctional protein 1 (AIMP1)/p43. In this complex, the N-terminal domain of ArgRS forms a long coiled-coil structure with the N-terminal helix of AIMP1 and anchors the C-terminal core of GlnRS, thereby playing a central role in assembly of the three components. Mutation of AIMP1 destabilized the N-terminal helix of ArgRS and abrogated its catalytic activity. Mutation of the N-terminal helix of ArgRS liberated GlnRS, which is known to control cell death. This ternary complex was further anchored to AIMP2/p38 through interaction with AIMP1. These findings demonstrate the importance of interactions between the N-terminal domains of ArgRS and AIMP1 for the catalytic and noncatalytic activities of ArgRS and for the assembly of the higher-order MSC protein complex.

Keywords
AIMP1 arginyl-tRNA synthetase crystal structure glutaminyl-tRNA synthetase multisynthetase complex
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
Published
2015-04-24
Indexed
2014-10-22
Updated
2015-10-29
Language
English
Country/Region
United States
NLM ID
7505876
Analysis Services
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