Expression of the 2Duf protein in wild-typeBacillus subtilisspores stabilizes inner membrane proteins and increases spore resistance to wet heat and hydrogen peroxide

Author:

Korza George1,DePratti Sarah1,Fairchild Daniel1,Wicander James1,Kanaan Julia1,Shames Hannah1,Nichols Frank C2,Cowan Ann1,Brul Stanley3,Setlow Peter1

Affiliation:

1. Department of Molecular Biology and Biophysics , Farmington, CT 06030-3305 , USA

2. Division of Periodontology, UConn Health , Farmington, CT 06030-3305 , USA

3. Molecular Biology & Microbial Food Safety, Swammerdam Institute for Life Science, University of Amsterdam , 1098XH Amsterdam , UK

Abstract

AbstractAimsThis work aimed to characterize spore inner membrane (IM) properties and the mechanism of spore killing by wet heat and H2O2 with spores overexpressing the 2Duf protein, which is naturally encoded from a transposon found only in some Bacillus strains with much higher spore resistance than wild-type spores.Methods and ResultsKilling of Bacillus subtilis spores by wet heat or hydrogen peroxide (H2O2) was slower when 2Duf was present, and Ca-dipicolinic acid release was slower than killing. Viabilities on rich plates of wet heat- or H2O2 -treated spores +/- 2Duf were lower when NaCl was added, but higher with glucose. Addition of glucose but not Casamino acids addition increased treated spores’ viability on minimal medium plates. Spores with 2Duf required higher heat activation for germination, and their germination was more wet-heat resistant than that of wild-type spores, processes that involve IM proteins. IM permeability and lipid mobility were lower in spores with 2Duf, although IM phospholipid composition was similar in spores +/- 2Duf.ConclusionsThese results and previous work suggests that wet heat and H2O2 kill spores by damaging an IM enzyme or enzymes involved in oxidative phosphorylation.

Funder

NIGMS

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,General Medicine,Biotechnology

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