Effects of Clostridium perfringens Alpha-Toxin (PLC) and Perfringolysin O (PFO) on Cytotoxicity to Macrophages, on Escape from the Phagosomes of Macrophages, and on Persistence of C. perfringens in Host Tissues
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[1] D. Portnoy,et al. The two distinct phospholipases C of Listeria monocytogenes have overlapping roles in escape from a vacuole and cell-to-cell spread , 1995, Infection and immunity.
[2] D. Stevens,et al. Role of theta toxin, a sulfhydryl-activated cytolysin, in the pathogenesis of clostridial gas gangrene. , 1993, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[3] G. Krejs,et al. Mechanisms and management of antibiotic-associated diarrhea. , 1998, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[4] J. Spitznagel,et al. Nonoxidative antimicrobial reactions of leukocytes. , 1984, Contemporary topics in immunobiology.
[5] R. Tweten,et al. Beta-barrel pore-forming toxins: intriguing dimorphic proteins. , 2001, Biochemistry.
[6] M. Thelestam,et al. The projection structure of perfringolysin O (Clostridium perfringens theta-toxin). , 1993, FEBS letters.
[7] D. Court,et al. Transcription antitermination: the λ paradigm updated , 1995 .
[8] M. Thelestam,et al. The projection structure of Perfringolysin O (Clostridium perfringens θ‐toxin) , 1993 .
[9] S. Melville,et al. Multiple effects on Clostridium perfringens binding, uptake and trafficking to lysosomes by inhibitors of macrophage phagocytosis receptors. , 2003, Microbiology.
[10] S. Melville,et al. The anaerobic pathogen Clostridium perfringens can escape the phagosome of macrophages under aerobic conditions , 2000, Cellular microbiology.
[11] D. Stevens,et al. Effects of alpha and theta toxins from Clostridium perfringens on human polymorphonuclear leukocytes. , 1987, The Journal of infectious diseases.
[12] D. Stevens,et al. The Pathogenesis of Gas Gangrene , 1997 .
[13] R. Titball. Chapter 14 – Clostridial Phospholipases , 1997 .
[14] M. Parker,et al. The cholesterol-dependent cytolysins. , 2001, Current topics in microbiology and immunology.
[15] Joel A. Swanson,et al. The Listeria monocytogenes hemolysin has an acidic pH optimum to compartmentalize activity and prevent damage to infected host cells , 2002, The Journal of cell biology.
[16] C. Lee,et al. Clostridial gas gangrene. I. Cellular and molecular mechanisms of microvascular dysfunction induced by exotoxins of Clostridium perfringens. , 2000, The Journal of infectious diseases.
[17] M. Awad,et al. Clostridial Gas Gangrene: Evidence That α and θ Toxins Differentially Modulate the Immune Response and Induce Acute Tissue Necrosis , 1997 .
[18] S. Cole,et al. Molecular genetics and pathogenesis of Clostridium perfringens , 1991, Microbiological reviews.
[19] M. Awad,et al. Synergistic Effects of Alpha-Toxin and Perfringolysin O in Clostridium perfringens-Mediated Gas Gangrene , 2001, Infection and Immunity.
[20] G. Zimmerman,et al. Clostridium perfringens invasiveness is enhanced by effects of theta toxin upon PMNL structure and function: the roles of leukocytotoxicity and expression of CD11/CD18 adherence glycoprotein. , 1993, FEMS immunology and medical microbiology.
[21] D. Stevens,et al. The pathogenesis of clostridial myonecrosis. , 2000, International journal of medical microbiology : IJMM.
[22] R. Tweten,et al. β-Barrel Pore-Forming Toxins: Intriguing Dimorphic Proteins† , 2001 .
[23] J. Sambrook,et al. Molecular Cloning: A Laboratory Manual , 2001 .
[24] R K Tweten,et al. Capacity of listeriolysin O, streptolysin O, and perfringolysin O to mediate growth of Bacillus subtilis within mammalian cells , 1992, Infection and immunity.
[25] R. Tweten. The Thiol-Activated Clostridial Toxins , 1997 .
[26] K. Holmes. THE PATHOGENIC ANAEROBIC BACTERIA , 1970 .
[27] A. Sonenshein,et al. Expression from the Clostridium perfringens cpe promoter in C. perfringens and Bacillus subtilis , 1994, Infection and immunity.
[28] D. Stevens,et al. The role of clostridial toxins in the pathogenesis of gas gangrene. , 2002, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[29] B. McClane,et al. Evidence That the Enterotoxin Gene Can Be Episomal in Clostridium perfringens Isolates Associated with Non-Food-Borne Human Gastrointestinal Diseases , 1998, Journal of Clinical Microbiology.
[30] M. Awad,et al. Use of Genetically Manipulated Strains of Clostridium perfringens Reveals that Both Alpha-Toxin and Theta-Toxin Are Required for Vascular Leukostasis To Occur in Experimental Gas Gangrene , 1999, Infection and Immunity.
[31] M. Awad,et al. Clostridial gas gangrene: evidence that alpha and theta toxins differentially modulate the immune response and induce acute tissue necrosis. , 1997, The Journal of infectious diseases.
[32] B. McClane,et al. The clostridia: molecular biology and pathogenesis , 1997 .
[33] O. Matsushita,et al. Analysis of the Phospholipase C Gene of Clostridium perfringens KZ1340 Isolated from Antarctic Soil , 1996, Microbiology and immunology.
[34] C. Lee,et al. Clostridial gas gangrene. II. Phospholipase C-induced activation of platelet gpIIbIIIa mediates vascular occlusion and myonecrosis in Clostridium perfringens gas gangrene. , 2000, The Journal of infectious diseases.
[35] M. Klempner. Interactions of polymorphonuclear leukocytes with anaerobic bacteria. , 1984, Reviews of infectious diseases.
[36] G. Mandell. Bactericidal Activity of Aerobic and Anaerobic Polymorphonuclear Neutrophils , 1974, Infection and immunity.
[37] D. Stevens,et al. Effects of α and θ Toxins from Clostridium perfringens on Human Polymorphonuclear Leukocytes , 1987 .
[38] S Falkow,et al. Copyright © 1997, American Society for Microbiology Common Themes in Microbial Pathogenicity Revisited , 2022 .
[39] D. Portnoy,et al. A PEST-like sequence in listeriolysin O essential for Listeria monocytogenes pathogenicity. , 2000, Science.
[40] D. Portnoy,et al. Listeria monocytogenes Mutants That Fail To Compartmentalize Listerolysin O Activity Are Cytotoxic, Avirulent, and Unable To Evade Host Extracellular Defenses , 2003, Infection and Immunity.
[41] M. Miller,et al. Long-lived protective immunity to Listeria is conferred by immunization with particulate or soluble listerial antigen preparations coadministered with IL-12. , 1998, Cellular immunology.
[42] K. Murti,et al. Localization of adenovirus-encoded DNA replication proteins in the nucleus by immunogold electron microscopy. , 1990, The Journal of general virology.
[43] H. Takahashi. [Clostridial gas gangrene]. , 1999, Ryoikibetsu shokogun shirizu.
[44] H. Sakamoto,et al. Role of alpha-toxin in Clostridium perfringens infection determined by using recombinants of C. perfringens and Bacillus subtilis , 1994, Infection and immunity.
[45] D. Stevens,et al. Phospholipase C and perfringolysin O from Clostridium perfringens upregulate endothelial cell-leukocyte adherence molecule 1 and intercellular leukocyte adherence molecule 1 expression and induce interleukin-8 synthesis in cultured human umbilical vein endothelial cells , 1996, Infection and immunity.
[46] A. Aderem,et al. Mechanisms of phagocytosis in macrophages. , 1999, Annual review of immunology.
[47] D. Stevens. Necrotizing Clostridial Soft Tissue Infections , 1997 .
[48] D. Stevens,et al. Role of θ Toxin, a Sulfhydryl-Activated Cytolysin, in the Pathogenesis of Clostridial Gas Gangrene , 1993 .
[49] D. Portnoy,et al. Characterization of Listeria monocytogenes pathogenesis in a strain expressing perfringolysin O in place of listeriolysin O , 1994, Infection and immunity.