Structural Dynamics of Bacterial Translation Initiation Factor IF2

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Access status: Embargo until 2050-01-01 , 10922.full.pdf (2.29 MB)

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2012

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Wienk, HansISNI 0000000396964375
Tishchenko, E.
Belardinelli, R.
Tomaselli, S.
Dongre, RamachandraISNI 000000039667807X
Spurio, R.
Folkers, G.E.ISNI 0000000390350786
Gualerzi, C.O.
Boelens, R.ISNI 0000000389597108

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Abstract

Bacterial translation initiation factor IF2 promotes ribosomal subunit association, recruitment, and binding of fMet-tRNA to the ribosomal P-site and initiation dipeptide formation. Here, we present the solution structures of GDP-bound and apo-IF2-G2 of Bacillus stearothermophilus and provide evidence that this isolated domain binds the 50 S ribosomal subunit and hydrolyzes GTP. Differences between the free and GDP-bound structures of IF2-G2 suggest that domain reorganization within the G2-G3-C1 regions underlies the different structural requirements of IF2 during the initiation process. However, these structural signals are unlikely forwarded from IF2-G2 to the C-terminal fMet-tRNA binding domain (IF2-C2) because the connected IF2-C1 and IF2-C2 modules show completely independent mobility, indicating that the bacterial interdomain connector lacks the rigidity that was found in the archaeal IF2 homolog aIF5B.

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Wienk, H L J, Tishchenko, E, Belardinelli, R, Tomaselli, S, Dongre, R, Spurio, R, Folkers, G E, Gualerzi, C O & Boelens, R 2012, 'Structural Dynamics of Bacterial Translation Initiation Factor IF2', Journal of Biological Chemistry, vol. 287, no. 14, pp. 10922-10932. https://doi.org/10.1074/jbc.M111.333393