[http://​www ​ncbi ​nlm ​nih ​gov/​pubmed/​8169223]PubMed 104 Er

[http://​www.​ncbi.​nlm.​nih.​gov/​pubmed/​8169223]PubMed 104. Erbse AH, Falke JJ: The core signaling proteins of bacterial chemotaxis assemble to form an ultrastable complex. Biochemistry 2009,48(29):6975–6987. [http://​dx.​doi.​org/​10.​1021/​bi900641c]PubMedCrossRef 105. Muff TJ, Ordal GW: The diverse CheC-type phosphatases: chemotaxis and beyond. Mol Microbiol 2008,70(5):1054–1061. [http://​dx.​doi.​org/​10.​1111/​j.​1365–2958.​2008.​06482.​x]PubMedCrossRef

106. Stock JB, Koshland DE: A protein methylesterase involved in bacterial sensing. Proc Natl Acad Sci U S A 1978,75(8):3659–3663.PubMedCrossRef 107. Lupas A, Stock selleck kinase inhibitor J: Phosphorylation of an N-terminal regulatory domain activates the CheB methylesterase in bacterial chemotaxis. J Biol Chem 1989,264(29):17337–17342. [http://​www.​ncbi.​nlm.​nih.​gov/​pubmed/​2677005]PubMed 108. Djordjevic S, Goudreau PN, Xu Q, Stock AM, West AH: Structural basis for methylesterase CheB regulation by a phosphorylation-activated domain. Proc Natl Acad Sci U S A 1998,95(4):1381–1386.PubMedCrossRef CYC202 supplier 109. Stock A, Koshland DE, Stock J: Homologies between the Salmonella typhimurium CheY protein and proteins involved in the regulation of chemotaxis, membrane protein synthesis,

and sporulation. Proc Natl Acad Sci U S A 1985,82(23):7989–7993.PubMedCrossRef 110. Bischoff DS, Ordal GW: Mol Microbiol. 1992,6(18):2715–2723. [http://​www.​ncbi.​nlm.​nih.​gov/​pubmed/​1447979]PubMedCrossRef 111. Szurmant H, Bunn MW, Cannistraro VJ, Ordal

Branched chain aminotransferase GW: Bacillus subtilis hydrolyzes CheY-P at the location of its action, the flagellar switch. J Biol Chem 2003,278(49):48611–48616. [http://​dx.​doi.​org/​10.​1074/​jbc.​M306180200]PubMedCrossRef 112. Rao CV, Kirby JR, Arkin AP: Phosphatase localization in bacterial chemotaxis: divergent mechanisms, convergent principles. Phys Biol 2005,2(3):148–158. [http://​dx.​doi.​org/​10.​1088/​1478–3975/​2/​3/​002]PubMedCrossRef 113. Kirby JR, Kristich CJ, Saulmon MM, Zimmer MA, Garrity LF, Zhulin IB Ordal: CheC is related to the family of flagellar switch proteins and acts independently from CheD to control chemotaxis in Bacillus subtilis. Mol Microbiol 2001,42(3):573–585. [http://​www.​ncbi.​nlm.​nih.​gov/​pubmed/​11722727]PubMedCrossRef 114. Perazzona B, Spudich JL: Identification of methylation sites and effects of MK-2206 phototaxis stimuli on transducer methylation in Halobacterium salinarum. J Bacteriol 1999,181(18):5676–5683. [http://​www.​ncbi.​nlm.​nih.​gov/​pubmed/​10482508]PubMed 115. Oesterhelt D, Krippahl G: Phototrophic growth of halobacteria and its use for isolation of photosynthetically-deficient mutants. Ann Microbiol (Paris) 1983, 134B:137–150. [http://​www.​ncbi.​nlm.​nih.​gov/​pubmed/​6638758] 116. Wende A, Furtwängler K, Oesterhelt D: Phosphate-dependent behavior of the archaeon Halobacterium salinarum strain R1. J Bacteriol 2009,191(12):3852–3860. [http://​dx.​doi.​org/​10.​1128/​JB.​01642–08]PubMedCrossRef 117.

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