Sulfate-Dependent Repression of Genes That Function in Organosulfur Metabolism inBacillus subtilisRequires Spx
Open Access
- 15 June 2005
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 187 (12) , 4042-4049
- https://doi.org/10.1128/jb.187.12.4042-4049.2005
Abstract
Oxidative stress in Bacillus subtilis results in the accumulation of Spx protein, which exerts both positive and negative transcriptional control over a genome-wide scale through its interaction with the RNA polymerase α subunit. Previous microarray transcriptome studies uncovered a unique class of genes that are controlled by Spx-RNA polymerase interaction under normal growth conditions that do not promote Spx overproduction. These genes were repressed by Spx when sulfate was present as a sole sulfur source. The genes include those of the ytmI, yxeI, and ssu operons, which encode products resembling proteins that function in the uptake and desulfurization of organic sulfur compounds. Primer extension and analysis of operon-lacZ fusion expression revealed that the operons are repressed by sulfate and cysteine; however, Spx functioned only in sulfate-dependent repression. Both the ytmI operon and the divergently transcribed ytlI, encoding a LysR-type regulator that positively controls ytmI operon transcription, are repressed by Spx in sulfate-containing media. The CXXC motif of Spx, which is necessary for redox sensitive control of Spx activity in response to oxidative stress, is not required for sulfate-dependent repression. The yxeL-lacZ and ssu-lacZ fusions were also repressed in an Spx-dependent manner in media containing sulfate as the sole sulfur source. This work uncovers a new role for Spx in the control of sulfur metabolism in a gram-positive bacterium under nonstressful growth conditions.This publication has 43 references indexed in Scilit:
- The riboflavin kinase encoding generibRofBacillus subtilisis a part of a 10 kb operon, which is negatively regulated by theyrzCgene productFEMS Microbiology Letters, 2005
- Three Different Systems Participate in l -Cystine Uptake in Bacillus subtilisJournal of Bacteriology, 2004
- Enzymes and genes of taurine and isethionate dissimilation in Paracoccus denitrificansMicrobiology, 2004
- Global Expression Profile of Bacillus subtilis Grown in the Presence of Sulfate or MethionineJournal of Bacteriology, 2002
- Identification of Bacillus subtilis CysL, a Regulator of the cysJI Operon, Which Encodes Sulfite ReductaseJournal of Bacteriology, 2002
- Multiple Pathways of Spx (YjbD) Proteolysis inBacillus subtilisJournal of Bacteriology, 2002
- Expression of the Bacillus subtilis sulphonate–sulphur utilization genes is regulated at the levels of transcription initiation and terminationMolecular Microbiology, 2001
- Mutations conferring amino acid residue substitutions in the carboxy‐terminal domain of RNA polymerase α can suppress clpX and clpP with respect to developmentally regulated transcription in Bacillus subtilisMolecular Microbiology, 2000
- Microbial desulfonationFEMS Microbiology Reviews, 1998
- A new gene, cbl, encoding a member of the LysR family of transcriptional regulators belongs to Escherichia coli cys regulonGene, 1995