The distinct PhoPR mediated responses to phosphate limitation in Bacillus subtilis subspecies subtilis and spizizenii stem from differences in wall teichoic acid composition and metabolism
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Title
The distinct PhoPR mediated responses to phosphate limitation in Bacillus subtilis
subspecies subtilis
and spizizenii
stem from differences in wall teichoic acid composition and metabolism
Authors
Keywords
-
Journal
MOLECULAR MICROBIOLOGY
Volume 109, Issue 1, Pages 23-40
Publisher
Wiley
Online
2018-04-12
DOI
10.1111/mmi.13965
References
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Related references
Note: Only part of the references are listed.- Identification of Two Phosphate Starvation-induced Wall Teichoic Acid Hydrolases Provides First Insights into the Degradative Pathway of a Key Bacterial Cell Wall Component
- (2016) Cullen L. Myers et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Genome-Wide Analysis of Phosphorylated PhoP Binding to Chromosomal DNA Reveals Several Novel Features of the PhoPR-Mediated Phosphate Limitation Response in Bacillus subtilis
- (2015) Letal I. Salzberg et al. JOURNAL OF BACTERIOLOGY
- The Pho regulon: a huge regulatory network in bacteria
- (2015) Fernando Santos-Beneit Frontiers in Microbiology
- Lipoteichoic Acid Synthesis and Function in Gram-Positive Bacteria
- (2014) Matthew G. Percy et al. Annual Review of Microbiology
- Lipoteichoic Acids, Phosphate-Containing Polymers in the Envelope of Gram-Positive Bacteria
- (2014) O. Schneewind et al. JOURNAL OF BACTERIOLOGY
- PhoR autokinase activity is controlled by an intermediate in wall teichoic acid metabolism that is sensed by the intracellular PAS domain during the PhoPR-mediated phosphate limitation response ofBacillus subtilis
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- (2011) Yoshikazu Kawai et al. EMBO JOURNAL
- Cell envelope gene expression in phosphate-limited Bacillus subtilis cells
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- Staphylococcus aureus and Bacillus subtilis W23 Make Polyribitol Wall Teichoic Acids Using Different Enzymatic Pathways
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- pBaSysBioII: an integrative plasmid generating gfp transcriptional fusions for high-throughput analysis of gene expression in Bacillus subtilis
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- (2008) Hiroki Yamamoto et al. MOLECULAR MICROBIOLOGY
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- (2008) Christopher Weidenmaier et al. NATURE REVIEWS MICROBIOLOGY
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