Bacillus subtilis NrnB is expressed during sporulation and acts as a unique 3′-5′ exonuclease

Author:

Myers Tanner M1,Ingle Shakti2,Weiss Cordelia A3,Sondermann Holger4,Lee Vincent T3ORCID,Bechhofer David H2ORCID,Winkler Wade C13ORCID

Affiliation:

1. Department of Chemistry and Biochemistry, The University of Maryland, College Park , MD  20742, USA

2. Department of Pharmacological Sciences, Icahn School of Medicine at Mount Sinai , New York , NY  10029, USA

3. Department of Cell Biology and Molecular Genetics, The University of Maryland, College Park , MD  20742, USA

4. CSSB Centre for Structural Systems Biology , Deutsches Elektronen-Synchrotron DESY, Notkestr. 85, 22607  Hamburg , Germany

Abstract

Abstract All cells employ a combination of endo- and exoribonucleases to degrade long RNA polymers to fragments 2–5 nucleotides in length. These short RNA fragments are processed to monoribonucleotides by nanoRNases. Genetic depletion of nanoRNases has been shown to increase abundance of short RNAs. This deleteriously affects viability, virulence, and fitness, indicating that short RNAs are a metabolic burden. Previously, we provided evidence that NrnA is the housekeeping nanoRNase for Bacillus subtilis. Herein, we investigate the biological and biochemical functions of the evolutionarily related protein, B. subtilis NrnB (NrnBBs). These experiments show that NrnB is surprisingly different from NrnA. While NrnA acts at the 5′ terminus of RNA substrates, NrnB acts at the 3′ terminus. Additionally, NrnA is expressed constitutively under standard growth conditions, yet NrnB is selectively expressed during endospore formation. Furthermore, NrnA processes only short RNAs, while NrnB unexpectedly processes both short RNAs and longer RNAs. Indeed, inducible expression of NrnB can even complement the loss of the known global 3′-5′ exoribonucleases, indicating that it acts as a general exonuclease. Together, these data demonstrate that NrnB proteins, which are widely found in Firmicutes, Epsilonproteobacteria and Archaea, are fundamentally different than NrnA proteins and may be used for specialized purposes.

Funder

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Genetics

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