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Phage Shock Protein G,a Novel Ethanol-Induced Stress Protein in Salmonella typhimurium
Authors:Alireza Shoae Hassani  Feridon Malekzadeh  Nour Amirmozafari  Kasra Hamdi  Negar Ordouzadeh  Amir Ghaemi
Affiliation:(1) Microbiology Department of Fars Science and Research Branch of Azad University, IAU, Fars, Iran;(2) Microbiology Department of Tehran Sciences and Research Branch of IAU, Tehran, Iran;(3) Microbiology Department, Iran University of Medical Sciences, Tehran, Iran;(4) Faculty of Medicine, Golestan University of Medical Sciences, Gorgan, Iran
Abstract:Exposure to ethanol is a stress condition that Salmonella typhimurium often encounters during its life cycle. Food, beverage, drugs, and cosmetics have a long history of using alcohols to control pathogens. Ethanol is also commonly used for disinfecting medical instruments. This study was conducted to evaluate the ethanol stress variations on the protein profile, cell structure, and serologic features of S. typhimurium. Sodium dodecyl sulfate–polyacrylamide gel electrophoresis revealed the phage shock protein G (pspG), a new ethanol-induced stress protein in cells adapted to 10% ethanol. The result was confirmed by liquid chromatography–mass spectrometry. The maximum quantity of this 9.02-kDa protein was produced in 12.5% (v/v) of ethanol-treated cultures. Scanning electron microscopy has demonstrated new phenotypic characteristics in bacterial structure. The cells were unable to undergo binary fission. This phenomenon explains the tight attachment of bacteria in a colony. Overall, ethanol extreme stress induced expression of new proteins like PspG and repression of some other proteins in S. typhimurium. These induction and repression processes have inflicted dramatic changes on Salmonella behaviors. Alireza Shoae Hassani, Kasra Hamdi and Amir Ghaemi are members of Young Researchers Club (YRC) of Tehran Science & Research Campus of IAU, Tehran, Iran.
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