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Molecular architecture of a eukaryotic translational initiation complex.


ABSTRACT: The last step in eukaryotic translational initiation involves the joining of the large and small subunits of the ribosome, with initiator transfer RNA (Met-tRNA(i)(Met)) positioned over the start codon of messenger RNA in the P site. This step is catalyzed by initiation factor eIF5B. We used recent advances in cryo-electron microscopy (cryo-EM) to determine a structure of the eIF5B initiation complex to 6.6 angstrom resolution from <3% of the population, comprising just 5143 particles. The structure reveals conformational changes in eIF5B, initiator tRNA, and the ribosome that provide insights into the role of eIF5B in translational initiation. The relatively high resolution obtained from such a small fraction of a heterogeneous sample suggests a general approach for characterizing the structure of other dynamic or transient biological complexes.

SUBMITTER: Fernandez IS 

PROVIDER: S-EPMC3836175 | biostudies-literature | 2013 Nov

REPOSITORIES: biostudies-literature

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Molecular architecture of a eukaryotic translational initiation complex.

Fernández Israel S IS   Bai Xiao-Chen XC   Hussain Tanweer T   Kelley Ann C AC   Lorsch Jon R JR   Ramakrishnan V V   Scheres Sjors H W SHW  

Science (New York, N.Y.) 20131107 6160


The last step in eukaryotic translational initiation involves the joining of the large and small subunits of the ribosome, with initiator transfer RNA (Met-tRNA(i)(Met)) positioned over the start codon of messenger RNA in the P site. This step is catalyzed by initiation factor eIF5B. We used recent advances in cryo-electron microscopy (cryo-EM) to determine a structure of the eIF5B initiation complex to 6.6 angstrom resolution from <3% of the population, comprising just 5143 particles. The struc  ...[more]

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