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Specific interactions of the L10(L12)4 ribosomal protein complex with mRNA, rRNA, and L11.
Biochemistry. 2008 Mar 04; 47(9):2721-31.B

Abstract

Large ribosomal subunit proteins L10 and L12 form a pentameric protein complex, L10(L12) 4, that is intimately involved in the ribosome elongation cycle. Its contacts with rRNA or other ribosomal proteins have been only partially resolved by crystallography. In Escherichia coli, L10 and L12 are encoded from a single operon for which L10(L12) 4 is a translational repressor that recognizes a secondary structure in the mRNA leader. In this study, L10(L12) 4 was expressed from the moderate thermophile Bacillus stearothermophilus to quantitatively compare strategies for binding of the complex to mRNA and ribosome targets. The minimal mRNA recognition structure is widely distributed among bacteria and has the potential to form a kink-turn structure similar to one identified in the rRNA as part of the L10(L12) 4 binding site. Mutations in equivalent positions between the two sequences have similar effects on L10(L12) 4-RNA binding affinity and identify the kink-turn motif and a loop AA sequence as important recognition elements. In contrast to the larger rRNA structure, the mRNA apparently positions the kink-turn motif and loop for protein recognition without the benefit of Mg (2+)-dependent tertiary structure. The mRNA and rRNA fragments bind L10(L12) 4 with similar affinity (approximately 10 (8) M (-1)), but fluorescence binding studies show that a nearby protein in the ribosome, L11, enhances L10(L12) 4 binding approximately 100-fold. Thus, mRNA and ribosome targets use similar RNA features, held in different structural contexts, to recognize L10(L12) 4, and the ribosome ensures the saturation of its L10(L12) 4 binding site by means of an additional protein-protein interaction.

Authors+Show Affiliations

Department of Biophysics, Johns Hopkins University, Baltimore, Maryland 21218, USA.No affiliation info available

Pub Type(s)

Journal Article
Research Support, N.I.H., Extramural

Language

eng

PubMed ID

18247578

Citation

Iben, James R., and David E. Draper. "Specific Interactions of the L10(L12)4 Ribosomal Protein Complex With mRNA, rRNA, and L11." Biochemistry, vol. 47, no. 9, 2008, pp. 2721-31.
Iben JR, Draper DE. Specific interactions of the L10(L12)4 ribosomal protein complex with mRNA, rRNA, and L11. Biochemistry. 2008;47(9):2721-31.
Iben, J. R., & Draper, D. E. (2008). Specific interactions of the L10(L12)4 ribosomal protein complex with mRNA, rRNA, and L11. Biochemistry, 47(9), 2721-31. https://doi.org/10.1021/bi701838y
Iben JR, Draper DE. Specific Interactions of the L10(L12)4 Ribosomal Protein Complex With mRNA, rRNA, and L11. Biochemistry. 2008 Mar 4;47(9):2721-31. PubMed PMID: 18247578.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Specific interactions of the L10(L12)4 ribosomal protein complex with mRNA, rRNA, and L11. AU - Iben,James R, AU - Draper,David E, Y1 - 2008/02/05/ PY - 2008/2/6/pubmed PY - 2008/6/5/medline PY - 2008/2/6/entrez SP - 2721 EP - 31 JF - Biochemistry JO - Biochemistry VL - 47 IS - 9 N2 - Large ribosomal subunit proteins L10 and L12 form a pentameric protein complex, L10(L12) 4, that is intimately involved in the ribosome elongation cycle. Its contacts with rRNA or other ribosomal proteins have been only partially resolved by crystallography. In Escherichia coli, L10 and L12 are encoded from a single operon for which L10(L12) 4 is a translational repressor that recognizes a secondary structure in the mRNA leader. In this study, L10(L12) 4 was expressed from the moderate thermophile Bacillus stearothermophilus to quantitatively compare strategies for binding of the complex to mRNA and ribosome targets. The minimal mRNA recognition structure is widely distributed among bacteria and has the potential to form a kink-turn structure similar to one identified in the rRNA as part of the L10(L12) 4 binding site. Mutations in equivalent positions between the two sequences have similar effects on L10(L12) 4-RNA binding affinity and identify the kink-turn motif and a loop AA sequence as important recognition elements. In contrast to the larger rRNA structure, the mRNA apparently positions the kink-turn motif and loop for protein recognition without the benefit of Mg (2+)-dependent tertiary structure. The mRNA and rRNA fragments bind L10(L12) 4 with similar affinity (approximately 10 (8) M (-1)), but fluorescence binding studies show that a nearby protein in the ribosome, L11, enhances L10(L12) 4 binding approximately 100-fold. Thus, mRNA and ribosome targets use similar RNA features, held in different structural contexts, to recognize L10(L12) 4, and the ribosome ensures the saturation of its L10(L12) 4 binding site by means of an additional protein-protein interaction. SN - 0006-2960 UR - https://www.unboundmedicine.com/medline/citation/18247578/Specific_interactions_of_the_L10_L12_4_ribosomal_protein_complex_with_mRNA_rRNA_and_L11_ DB - PRIME DP - Unbound Medicine ER -