Additional file Additional file 1: Figure S1 Complementation of

Additional file Additional file 1: Figure S1. Complementation of the csrA (sup) mutant for growth at 10°C by introduction of the csrA gene in trans (https://www.selleckchem.com/products/EX-527.html pCA132) and further by using an arabinose inducible promoter (pC114 arabionose). References 1. Phadtare S: Recent developments in bacterial cold-shock response. Cur Issues QNZ in vitro Mol Biol 2004, 6:125–136. 2. Wouters JA, Rombouts FM, Kuipers OP, de Vos WM, Abee T: The role of cold-shock proteins in low-temperature adaptation of food-related bacteria. Syst Appl Microbiol

2000, 23:165–173.PubMedCrossRef 3. Ramos JL, Gallegos M-T, Marqués S, Ramos-González M-I, Espinosa-Urgel M, Segura A: Responses of Gram-negative bacteria to certain environmental stressors. Curr Opin Microbiol 2001, 4:166–171.PubMedCrossRef 4. Gualerzi CO, Giuliodori AM, Pon CL: Transcriptional and post-transcriptional control of cold-shock

genes. J Mol Biol 2003, 331:527–539.PubMedCrossRef 5. Phadtare S, www.selleckchem.com/products/dorsomorphin-2hcl.html Alsina J, Inouye M: Cold-shock response and cold-shock proteins. Curr Opin Microbiol 1999, 2:175–180.PubMedCrossRef 6. Wickner S, Maurizi MR, Gottesman S: Posttranslational quality control: folding, refolding, and degrading proteins. Science 1999, 286:1888–1893.PubMedCrossRef 7. Gottesman S: Proteolysis in bacterial regulatory circuits. Annu Rev Cell Dev Biol 2003, 19:565–587.PubMedCrossRef 8. Frees D, Qazi SN, Hill PJ, Ingmer H: Alternative roles of ClpX and ClpP in Staphylococcus aureus stress tolerance and virulence. Mol Microbiol 2003, 48:1565–1578. 9. Robertson GT, Ng WL, Foley J, Gilmour R, Winkler ME: Global transcriptional analysis of clpP mutations of type 2 Streptococcus pneumoniae and their effects

on physiology and virulence. J Bacteriol 2002, 184:3508–3520. 10. Porankiewicz J, Schelin J, Clarke AK: The ATP-dependent Clp protease is essential for acclimation to UV-B and low temperature in the cyanobacterium Synechococcus . Mol Microbiol 1998, 29:275–283. 11. Fedhila S, Msadek T, Nel P, Lereclus D: Distinct clpP genes control specific adaptive responses in Bacillus thuringiensis . J Bacteriol 2002, 184:5554–5562. 12. Loughlin MF, Arandhara V, Okolie C, Aldsworth TG, Jensk PJ: Helicobacter pylori mutants defective in the clpP ATP-dependent protease and the chaperone clpA display PR-171 purchase reduced macrophage and murine survival. Microb Pathog 2009, 46:53–57. 13. Knudsen GM, Olsen JE, Aabo S, Barrow P, Rychlik I, Thomsen LE: ClpP deletion causes attenuation of Salmonella Typhimurium through mis-regulation of RpoS and indirect control of CsrA and the SPI genes. Microbiology 2013, 159:1497–1509. 14. Tomoyasu T, Ohkishi T, Ukyo Y, Tokumitsu A, Takya A, Suzuki M, Sekiya K, Matsui H, Kutsukake K, Yamamoto T: The ClpXP ATP-dependent protease regulates flagella synthesis in Salmonella enterica serovar Typhimurium. J Bacteriol 2002, 184:645–653. 15.

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