Complexity in bacterial cell–cell communication: Quorum signal integration and subpopulation signaling in the Bacillus subtilis phosphorelay
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Adam P Arkin | A. Arkin | D. Wolf | I. Bischofs | J. Hug | Ilka B Bischofs | Denise M Wolf | Joshua A Hug | Aiwen W Liu | Aiwen Liu
[1] C. Harwood,et al. Molecular biological methods for Bacillus , 1990 .
[2] B. Bassler,et al. Quorum sensing in bacteria. , 2001, Annual review of microbiology.
[3] Min Jiang,et al. Differential Processing of Propeptide Inhibitors of Rap Phosphatases in Bacillus subtilis , 2000, Journal of bacteriology.
[4] A. Grossman,et al. The spo0K locus of Bacillus subtilis is homologous to the oligopeptide permease locus and is required for sporulation and competence , 1991, Journal of bacteriology.
[5] Oscar P. Kuipers,et al. Phenotypic variation in bacteria: the role of feedback regulation , 2006, Nature Reviews Microbiology.
[6] D. Rand,et al. Isoform switching facilitates period control in the Neurospora crassa circadian clock , 2008, Molecular Systems Biology.
[7] Philippe Glaser,et al. Multiple protein-aspartate phosphatases provide a mechanism for the integration of diverse signals in the control of development in B. subtilis , 1994, Cell.
[8] I. Smith,et al. Regulation of spo0H, a gene coding for the Bacillus subtilis sigma H factor , 1991, Journal of bacteriology.
[9] A. Sonenshein,et al. Role of the Bacillus subtilis gsiA gene in regulation of early sporulation gene expression , 1992, Journal of bacteriology.
[10] I. Kurtser,et al. An Autoregulatory Circuit Affecting Peptide Signaling in Bacillus subtilis , 1999, Journal of bacteriology.
[11] Roberto Kolter,et al. Bistability and biofilm formation in Bacillus subtilis , 2007, Molecular microbiology.
[12] B. Lazazzera,et al. The extracellular Phr peptide-Rap phosphatase signaling circuit of Bacillus subtilis. , 2003, Frontiers in bioscience : a journal and virtual library.
[13] A. Grossman,et al. Purification and characterization of an extracellular peptide factor that affects two different developmental pathways in Bacillus subtilis. , 1996, Genes & development.
[14] M. Perego,et al. A peptide export-import control circuit modulating bacterial development regulates protein phosphatases of the phosphorelay. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[15] Oleg A Igoshin,et al. Transient heterogeneity in extracellular protease production by Bacillus subtilis , 2008, Molecular systems biology.
[16] M. Perego,et al. Pentapeptide regulation of aspartyl-phosphate phosphatases , 2001, Peptides.
[17] R. Losick,et al. Bistability in bacteria , 2006, Molecular microbiology.
[18] Masaya Fujita,et al. High- and Low-Threshold Genes in the Spo0A Regulon of Bacillus subtilis , 2005, Journal of bacteriology.
[19] R. Losick,et al. Fruiting body formation by Bacillus subtilis , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[20] A. Grossman,et al. The ins and outs of peptide signaling. , 1998, Trends in microbiology.
[21] I. Smith,et al. Bacillus subtilis early sporulation genes kinA, spo0F, and spo0A are transcribed by the RNA polymerase containing sigma H , 1992, Journal of bacteriology.
[22] M. P. Gallagher,et al. The oligopeptide transport system of Bacillus subtilis plays a role in the initiation of sporulation , 1991, Molecular microbiology.
[23] B. Bassler,et al. Interspecies communication in bacteria. , 2003, The Journal of clinical investigation.
[24] A. Grossman,et al. An Exported Peptide Functions Intracellularly to Contribute to Cell Density Signaling in B. subtilis , 1997, Cell.
[25] Oscar P Kuipers,et al. Temporal separation of distinct differentiation pathways by a dual specificity Rap‐Phr system in Bacillus subtilis , 2007, Molecular microbiology.
[26] Oscar P Kuipers,et al. Phosphatases modulate the bistable sporulation gene expression pattern in Bacillus subtilis , 2005, Molecular microbiology.
[27] J. Hoch,et al. Cell-cell communication regulates the effects of protein aspartate phosphatases on the phosphorelay controlling development in Bacillus subtilis. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[28] A. Grossman,et al. Control of a Family of Phosphatase Regulatory Genes (phr) by the Alternate Sigma Factor Sigma-H ofBacillus subtilis , 2001, Journal of bacteriology.
[29] R. Redfield. Is quorum sensing a side effect of diffusion sensing? , 2002, Trends in microbiology.
[30] A. Grossman,et al. Extracellular control of spore formation in Bacillus subtilis. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[31] J. Hoch,et al. Protein aspartate phosphatases control the output of two-component signal transduction systems. , 1996, Trends in genetics : TIG.
[32] J. Hoch,et al. Initiation of sporulation in B. subtilis is controlled by a multicomponent phosphorelay , 1991, Cell.
[33] Roberto Kolter,et al. Control of cell fate by the formation of an architecturally complex bacterial community. , 2008, Genes & development.
[34] F. Taddei,et al. Bet-hedging and epigenetic inheritance in bacterial cell development , 2008, Proceedings of the National Academy of Sciences.