Small-angle X-ray Solution Scattering Study of the Multi-aminoacyl-tRNA Synthetase Complex Reveals an Elongated and Multi-armed particle

被引:26
作者
Dias, Jose [1 ]
Renault, Louis [1 ]
Perez, Javier [2 ]
Mirande, Marc [1 ]
机构
[1] CNRS, Ctr Rech Gif, Lab Enzymol & Biochim Struct, F-91190 Gif Sur Yvette, France
[2] Orme Merisiers St Aubin, SOLEIL Synchrotron, Gif Sur Yvette, France
关键词
PROTEIN-PROTEIN INTERACTIONS; EUKARYOTIC MULTISYNTHETASE COMPLEX; LEUCYL-TRANSFER RNA; MACROMOLECULAR COMPLEXES; POLYPEPTIDE COMPONENTS; MULTIENZYME COMPLEX; ELECTRON-MICROSCOPY; STRUCTURAL-ANALYSIS; CRYSTAL-STRUCTURES; BINDING DOMAIN;
D O I
10.1074/jbc.M113.489922
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In animal cells, nine aminoacyl-tRNA synthetases are associated with the three auxiliary proteins p18, p38, and p43 to form a stable and conserved large multi-aminoacyl-tRNA synthetase complex (MARS), whose molecular mass has been proposed to be between 1.0 and 1.5 MDa. The complex acts as a molecular hub for coordinating protein synthesis and diverse regulatory signal pathways. Electron microscopy studies defined its low resolution molecular envelope as an overall rather compact, asymmetric triangular shape. Here, we have analyzed the composition and homogeneity of the native mammalian MARS isolated from rabbit liver and characterized its overall internal structure, size, and shape at low resolution by hydrodynamic methods and small-angle x-ray scattering in solution. Our data reveal that the MARS exhibits a much more elongated and multi-armed shape than expected from previous reports. The hydrodynamic and structural features of the MARS are large compared with other supramolecular assemblies involved in translation, including ribosome. The large dimensions and non-compact structural organization of MARS favor a large protein surface accessibility for all its components. This may be essential to allow structural rearrangements between the catalytic and cis-acting tRNA binding domains of the synthetases required for binding the bulky tRNA substrates. This non-compact architecture may also contribute to the spatiotemporal controlled release of some of its components, which participate in non-canonical functions after dissociation from the complex.
引用
收藏
页码:23979 / 23989
页数:11
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