Universally applicable methods for monitoring response regulator aspartate phosphorylation both in vitro and in vivo using Phos-tag-based reagents.

[1]  J. Fletcher Distribution , 2009, BMJ : British Medical Journal.

[2]  T. Terwilliger,et al.  Domain orientation in the inactive response regulator Mycobacterium tuberculosis MtrA provides a barrier to activation. , 2007, Biochemistry.

[3]  E. Kinoshita,et al.  A single nucleotide polymorphism genotyping method using phosphate-affinity polyacrylamide gel electrophoresis. , 2007, Analytical biochemistry.

[4]  H. Allcock,et al.  Phosphoramidic Acid and its Salts , 2007 .

[5]  E. Kinoshita,et al.  Enrichment of phosphorylated proteins from cell lysate using a novel phosphate‐affinity chromatography at physiological pH , 2006, Proteomics.

[6]  M. Ashby Distribution, structure and diversity of "bacterial" genes encoding two-component proteins in the Euryarchaeota. , 2006, Archaea.

[7]  E. Kinoshita,et al.  Phosphate-binding Tag, a New Tool to Visualize Phosphorylated Proteins*S , 2006, Molecular & Cellular Proteomics.

[8]  R. Calderone,et al.  Two-component signal transduction in human fungal pathogens. , 2006, FEMS yeast research.

[9]  H. Mori,et al.  Construction of Escherichia coli K-12 in-frame, single-gene knockout mutants: the Keio collection , 2006, Molecular systems biology.

[10]  Michael Y. Galperin,et al.  A census of membrane-bound and intracellular signal transduction proteins in bacteria: Bacterial IQ, extroverts and introverts , 2005, BMC Microbiology.

[11]  Ann M. Stock,et al.  Structural Analysis and Solution Studies of the Activated Regulatory Domain of the Response Regulator ArcA: A Symmetric Dimer Mediated by the α4-β5-α5 Face , 2005 .

[12]  Kazuki Inamori,et al.  Detection and quantification of on-chip phosphorylated peptides by surface plasmon resonance imaging techniques using a phosphate capture molecule. , 2005, Analytical chemistry.

[13]  E. Kinoshita,et al.  Novel immobilized zinc(II) affinity chromatography for phosphopeptides and phosphorylated proteins. , 2005, Journal of separation science.

[14]  T. Mizuno Two-Component Phosphorelay Signal Transduction Systems in Plants: from Hormone Responses to Circadian Rhythms , 2005, Bioscience, biotechnology, and biochemistry.

[15]  Eiji Kinoshita,et al.  Recognition of phosphate monoester dianion by an alkoxide-bridged dinuclear zinc(II) complex. , 2004, Dalton transactions.

[16]  T. Koike,et al.  Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry of phosphorylated compounds using a novel phosphate capture molecule. , 2003, Rapid communications in mass spectrometry : RCM.

[17]  Ann M Stock,et al.  Evidence of intradomain and interdomain flexibility in an OmpR/PhoB homolog from Thermotoga maritima. , 2002, Structure.

[18]  Ann M Stock,et al.  Synthesis of [(32)P]phosphoramidate for use as a low molecular weight phosphodonor reagent. , 2000, Analytical biochemistry.

[19]  B. Wanner,et al.  One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products. , 2000, Proceedings of the National Academy of Sciences of the United States of America.

[20]  J. Stock,et al.  Kinetics of CheY phosphorylation by small molecule phosphodonors , 1999, FEBS letters.

[21]  G. Shaulsky,et al.  Two-component signal transduction systems in eukaryotic microorganisms. , 1998, Current opinion in microbiology.

[22]  K. Yokoyama,et al.  [MINIREVIEW] Mechanism of Transcriptional Activation of the Phosphate Regulon in Escherichia coli , 1998 .

[23]  L. Kenney,et al.  Relative binding affinities of OmpR and OmpR-phosphate at the ompF and ompC regulatory sites. , 1998, Journal of molecular biology.

[24]  G. Cavet,et al.  An intersection of the cAMP/PKA and two‐component signal transduction systems in Dictyostelium , 1998, The EMBO journal.

[25]  R. Bourret,et al.  Catalytic mechanism of phosphorylation and dephosphorylation of CheY: kinetic characterization of imidazole phosphates as phosphodonors and the role of acid catalysis. , 1997, Biochemistry.

[26]  W. McCleary The activation of PhoB by acetylphosphate , 1996, Molecular microbiology.

[27]  J. Hoch,et al.  A phosphotransferase activity of the Bacillus subtilis sporulation protein Spo0F that employs phosphoramidate substrates. , 1996, Biochemistry.

[28]  J. Stock,et al.  Acetyl phosphate and the activation of two-component response regulators. , 1994, The Journal of biological chemistry.

[29]  S. Silver,et al.  Phosphate in Microorganisms: Cellular and Molecular Biology , 1994 .

[30]  A. Ninfa,et al.  Is acetyl phosphate a global signal in Escherichia coli? , 1993, Journal of bacteriology.

[31]  B. Wanner Gene regulation by phosphate in enteric bacteria , 1993, Journal of cellular biochemistry.

[32]  J. Stock,et al.  Phosphorylation of bacterial response regulator proteins by low molecular weight phospho-donors. , 1992, Proceedings of the National Academy of Sciences of the United States of America.

[33]  T. Kawamoto,et al.  Signal transduction in the phosphate regulon of Escherichia coli involves phosphotransfer between PhoR and PhoB proteins. , 1989, Journal of molecular biology.

[34]  Kenji Oosawa,et al.  Phosphorylation of three proteins in the signaling pathway of bacterial chemotaxis , 1988, Cell.

[35]  F. Neidhardt,et al.  Culture Medium for Enterobacteria , 1974, Journal of bacteriology.

[36]  D. Koshland Effect of Catalysts on the Hydrolysis of Acetyl Phosphate. Nucleophilic Displacement Mechanisms in Enzymatic Reactions1 , 1952 .

[37]  E. Kinoshita,et al.  Separation of a phosphorylated histidine protein using phosphate affinity polyacrylamide gel electrophoresis. , 2007, Analytical biochemistry.

[38]  青木 悠里 Label-free kinase profiling using phosphate-affinity polyacrylamide gel electrophoresis , 2007 .

[39]  Ann M Stock,et al.  Two-component signal transduction. , 2000, Annual review of biochemistry.

[40]  B. Wanner Phosphorus assimilation and control of the phosphate regulon , 1996 .

[41]  F. Neidhart Escherichia coli and Salmonella. , 1996 .

[42]  A. Lupas,et al.  Phosphoproteins involved in bacterial signal transduction. , 1988, Cold Spring Harbor symposia on quantitative biology.