Abstract
The availability of the complete sequence of the Bacillus subtilis chromosome (F. Kunst et al., Nature 390:249-256, 1997) makes possible the construction of genome-wide DNA arrays and the study of this organism on a global scale. Because we have a long-standing interest in the effects of scoC on late-stage developmental phenomena as they relate to aprE expression, we studied the genome-wide effects of a scoC null mutant with the goal of furthering the understanding of the role of scoC in growth and developmental processes. In the present work we compared the expression patterns of isogenic B. subtilis strains, one of which carries a null mutation in the scoC locus (scoC4). The results obtained indicate that scoC regulates, either directly or indirectly, the expression of at least 560 genes in the B. subtilis genome. ScoC appeared to repress as well as activate gene expression. Changes in expression were observed in genes encoding transport and binding proteins, those involved in amino acid, carbohydrate, and nucleotide and/or nucleoside metabolism, and those associated with motility, sporulation, and adaptation to atypical conditions. Changes in gene expression were also observed for transcriptional regulators, along with sigma factors, regulatory phosphatases and kinases, and members of sensor regulator systems. In this report, we discuss some of the phenotypes associated with the scoC mutant in light of the transcriptome changes observed.
MeSH Terms
Bacillus subtilis/genetics,growth & development
Bacterial Proteins/metabolism
Base Sequence
Carrier Proteins/genetics
Chemotaxis
Gene Expression Regulation, Bacterial
Genes, Bacterial
Genes, Regulator
Molecular Sequence Data
Nitrogen/metabolism
Oligonucleotide Array Sequence Analysis
Phenotype
Promoter Regions, Genetic
RNA, Bacterial/analysis
RNA, Messenger/analysis
Spores, Bacterial
Symporters
Transcription Factors
Transcription, Genetic
Chemicals
Bacterial Proteins
Carrier Proteins
RNA, Bacterial
RNA, Messenger
ScoC protein, Bacillus subtilis
Symporters
Transcription Factors
YclF protein, Bacillus subitillis
Nitrogen
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Caldwell R
Genencor International, Palo Alto, California 94304, USA.
Sapolsky R
Weyler W
Maile R R
Causey S C
Ferrari E
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