Ribosomes lacking bS21 gain function to regulate protein synthesis inFlavobacterium johnsoniae

Author:

McNutt Zakkary A12,Roy Bappaditya23,Gemler Bryan T24,Shatoff Elan A25,Moon Kyung-Mee6,Foster Leonard J6ORCID,Bundschuh Ralf24578ORCID,Fredrick Kurt123ORCID

Affiliation:

1. Ohio State Biochemistry Program, The Ohio State University , Columbus , OH  43210, USA

2. Center for RNA Biology, The Ohio State University , Columbus , OH  43210, USA

3. Department of Microbiology, The Ohio State University , Columbus , OH  43210, USA

4. Interdisciplinary Biophysics Graduate Program, The Ohio State University , Columbus , OH  43210, USA

5. Department of Physics, The Ohio State University , Columbus , OH  43210, USA

6. Department of Biochemistry and Molecular Biology, Michael Smith Laboratories, University of British Columbia , Vancouver , British Columbia , V3T1Z4 , Canada

7. Department of Chemistry & Biochemistry, The Ohio State University , Columbus , OH  43210, USA

8. Division of Hematology, Department of Internal Medicine, The Ohio State University , Columbus , OH  43210, USA

Abstract

AbstractRibosomes of Bacteroidia (formerly Bacteroidetes) fail to recognize Shine-Dalgarno (SD) sequences even though they harbor the anti-SD (ASD) of 16S rRNA. Inhibition of SD-ASD pairing is due to sequestration of the 3’ tail of 16S rRNA in a pocket formed by bS21, bS18, and bS6 on the 30S platform. Interestingly, in many Flavobacteriales, the gene encoding bS21, rpsU, contains an extended SD sequence. In this work, we present genetic and biochemical evidence that bS21 synthesis in Flavobacterium johnsoniae is autoregulated via a subpopulation of ribosomes that specifically lack bS21. Mutation or depletion of bS21 in the cell increases translation of reporters with strong SD sequences, such as rpsU’-gfp, but has no effect on other reporters. Purified ribosomes lacking bS21 (or its C-terminal region) exhibit higher rates of initiation on rpsU mRNA and lower rates of initiation on other (SD-less) mRNAs than control ribosomes. The mechanism of autoregulation depends on extensive pairing between mRNA and 16S rRNA, and exceptionally strong SD sequences, with predicted pairing free energies of < –13 kcal/mol, are characteristic of rpsU across the Bacteroidota. This work uncovers a clear example of specialized ribosomes in bacteria.

Funder

National Science Foundation

Genome Canada

NSERC

Publisher

Oxford University Press (OUP)

Subject

Genetics

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