Structural and biochemical characterization of the mitomycin C repair exonuclease MrfB

Author:

Manthei Kelly A1,Munson Lia M1,Nandakumar Jayakrishnan1,Simmons Lyle A1ORCID

Affiliation:

1. Department of Molecular, Cellular, and Developmental Biology, University of Michigan , Ann Arbor , MI , USA

Abstract

Abstract Mitomycin C (MMC) repair factor A (mrfA) and factor B (mrfB), encode a conserved helicase and exonuclease that repair DNA damage in the soil-dwelling bacterium Bacillus subtilis. Here we have focused on the characterization of MrfB, a DEDDh exonuclease in the DnaQ superfamily. We solved the structure of the exonuclease core of MrfB to a resolution of 2.1 Å, in what appears to be an inactive state. In this conformation, a predicted α-helix containing the catalytic DEDDh residue Asp172 adopts a random coil, which moves Asp172 away from the active site and results in the occupancy of only one of the two catalytic Mg2+ ions. We propose that MrfB resides in this inactive state until it interacts with DNA to become activated. By comparing our structure to an AlphaFold prediction as well as other DnaQ-family structures, we located residues hypothesized to be important for exonuclease function. Using exonuclease assays we show that MrfB is a Mg2+-dependent 3′–5′ DNA exonuclease. We show that Leu113 aids in coordinating the 3′ end of the DNA substrate, and that a basic loop is important for substrate binding. This work provides insight into the function of a recently discovered bacterial exonuclease important for the repair of MMC-induced DNA adducts.

Funder

National Institutes of Health

Publisher

Oxford University Press (OUP)

Reference63 articles.

1. Antibiotics produced by streptomyces;Procopio;Braz. J. Infect. Dis.,2012

2. Mitomycin, a new antibiotic from Streptomyces. I;Hata;J. Antibiotics Ser. A,1956

3. Mitomycin C: small, fast and deadly (but very selective);Tomasz;Chem. Biol.,1995

4. A molecular mechanism of mitomycin action: linking of complementary DNA strands;Iyer;Proc. Natl. Acad. Sci. U.S.A.,1963

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