Quaternary organization of the human eEF1B complex reveals unique multi-GEF domain assembly

Author:

Bondarchuk Tetiana V1,Shalak Vyacheslav F1ORCID,Lozhko Dmytro M1,Fatalska Agnieszka23,Szczepanowski Roman H4,Liudkovska Vladyslava14,Tsuvariev Oleksandr Yu5,Dadlez Michal2,El'skaya Anna V1,Negrutskii Boris S1

Affiliation:

1. Institute of Molecular Biology and Genetics, NAS of Ukraine , 150 Zabolotnogo St., 03143 Kyiv, Ukraine

2. Institute of Biochemistry and Biophysics, PAN , Pawinskiego 5a, 02-109 Warsaw, Poland

3. Department of Genetics, University of Cambridge , Cambridge CB2 3EH, UK

4. International Institute of Molecular and Cell Biology , Trojdena 4, 02-109 Warsaw, Poland

5. Institute of High Technologies, Taras Shevchenko National University of Kyiv , Akademik Glushkov Ave. 4-g, 03022 Kyiv, Ukraine

Abstract

Abstract Protein synthesis in eukaryotic cell is spatially and structurally compartmentalized that ensures high efficiency of this process. One of the distinctive features of higher eukaryotes is the existence of stable multi-protein complexes of aminoacyl-tRNA synthetases and translation elongation factors. Here, we report a quaternary organization of the human guanine-nucleotide exchange factor (GEF) complex, eEF1B, comprising α, β and γ subunits that specifically associate into a heterotrimeric form eEF1B(αβγ)3. As both the eEF1Bα and eEF1Bβ proteins have structurally conserved GEF domains, their total number within the complex is equal to six. Such, so far, unique structural assembly of the guanine-nucleotide exchange factors within a stable complex may be considered as a ‘GEF hub’ that ensures efficient maintenance of the translationally active GTP-bound conformation of eEF1A in higher eukaryotes.

Funder

National Research Foundation of Ukraine

National Science Centre

Centre of Preclinical Research and Technology

National Multidisciplinary Laboratory of Functional Nanomaterials

Foundation of Polish Science

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference59 articles.

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3. Prokaryotic and eukaryotic translation factors: International Union of Biochemistry and Molecular Biology (IUBMB);Clark;Biochimie.,1996

4. Purification of various forms of elongation factor 1 from rabbit reticulocytes;Carvalho;Arch. Biochem. Biophys.,1984

5. Purification and properties of a high-molecular-mass complex between Val-tRNA synthetase and the heavy form of elongation factor 1 from mammalian cells;Motorin;Eur. J. Biochem./FEBS,1991

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