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Applied and Environmental Microbiology|March 13, 2016
Transcriptional Profile during Deoxycholate-Induced Sporulation in a Clostridium perfringens Isolate Causing Foodborne IllnessMayo Yasugi, Daisuke Okuzaki, Ritsuko Kuwana, et al.
FEMS Microbiology Letters|February 17, 2007
Identification of structural genes for Clostridium botulinum type C neurotoxin-converting phage particlesHyun-Jung Hwang, Jae-Chul Lee, Yumiko Yamamoto, et al.
Plos One|September 7, 2012
Clostridium difficile spore-macrophage interactions: spore survivalDaniel Paredes-Sabja, Glenda Cofre-Araneda, Christian Brito-Silva, et al.
Journal of Bacteriology|April 16, 2013
Unique regulatory mechanism of sporulation and enterotoxin production in Clostridium perfringensKaori Ohtani, Hideki Hirakawa, Daniel Paredes-Sabja, et al.
Food Microbiology|May 23, 2015
Location and stoichiometry of the protease CspB and the cortex-lytic enzyme SleC in Clostridium perfringens sporesSaeed Banawas, George Korza, Daniel Paredes-Sabja, et al.
Journal of Bacteriology|September 10, 2013
The Clostridium perfringens germinant receptor protein GerKC is located in the spore inner membrane and is crucial for spore germinationSaeed Banawas, Daniel Paredes-Sabja, George Korza, et al.
Infection and Immunity|May 23, 2006
Inorganic phosphate induces spore morphogenesis and enterotoxin production in the intestinal pathogen Clostridium perfringensValeria A Philippe, Marcelo B Méndez, I-Hsiu Huang, et al.
Anaerobe|November 26, 2013
Characterization of the collagen-like exosporium protein, BclA1, of Clostridium difficile sporesMarjorie Pizarro-Guajardo, Valeria Olguín-Araneda, Jonathan Barra-Carrasco, et al.
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