Oligomeric and subunit structure of the Helicobacter pylori vacuolating cytotoxin
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R. Rappuoli | P. Lupetti | R. Manetti | J. Telford | J. Heuser | R. Dallai | P. Massari | S. Lanzavecchia | P. L. Bellon | Telford | J. L | H. Pier | Luigi Bellon
[1] R. Rappuoli,et al. Lipid interaction of the 37-kDa and 58-kDa fragments of the Helicobacter pylori cytotoxin. , 1995, European journal of biochemistry.
[2] R. Rappuoli,et al. Helicobacter pylori cytotoxin: importance of native conformation for induction of neutralizing antibodies , 1995, Infection and immunity.
[3] R. Rappuoli,et al. Low pH Activates the Vacuolating Toxin of Helicobacter pylori, Which Becomes Acid and Pepsin Resistant (*) , 1995, The Journal of Biological Chemistry.
[4] R. Rappuoli,et al. Development of a mouse model of Helicobacter pylori infection that mimics human disease , 1995, Science.
[5] R. Rappuoli,et al. Analysis of expression of CagA and VacA virulence factors in 43 strains of Helicobacter pylori reveals that clinical isolates can be divided into two major types and that CagA is not necessary for expression of the vacuolating cytotoxin , 1995, Infection and immunity.
[6] Joel Moss,et al. Bacterial toxins and virulence factors in disease , 1995 .
[7] R. Dallai,et al. Three-dimensional reconstructions of accessory tubules observed in the sperm axonemes of two insect species , 1994 .
[8] R. Rappuoli,et al. Cellular vacuoles induced by Helicobacter pylori originate from late endosomal compartments. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[9] R. Rappuoli,et al. Unravelling the pathogenic role of Helicobacter pylori in peptic ulcer: potential new therapies and vaccines. , 1994, Trends in biotechnology.
[10] K. Sandvig,et al. Diphtheria toxin at low pH depolarizes the membrane, increases the membrane conductance and induces a new type of ion channel in Vero cells. , 1994, The EMBO journal.
[11] J S Wall,et al. Anthrax protective antigen forms oligomers during intoxication of mammalian cells. , 1994, The Journal of biological chemistry.
[12] M. Comanducci,et al. Gene structure of the Helicobacter pylori cytotoxin and evidence of its key role in gastric disease , 1994, The Journal of experimental medicine.
[13] M. Blaser,et al. Divergence of genetic sequences for the vacuolating cytotoxin among Helicobacter pylori strains. , 1994, The Journal of biological chemistry.
[14] R. Haas,et al. Genetic analysis of the Helicobacter pylori vacuoiating cytotoxin: structural similarities with the IgA protease type of exported protein , 1994, Molecular microbiology.
[15] R. Rappuoli. Toxin inactivation and antigen stabilization: two different uses of formaldehyde. , 1994, Vaccine.
[16] B. Kagan,et al. Activation and mechanism of Clostridium septicum alpha toxin , 1993, Molecular microbiology.
[17] H. Danbara,et al. A ring-shaped structure with a crown formed by streptolysin O on the erythrocyte membrane , 1993, Journal of bacteriology.
[18] M. Zerial,et al. Rab GTPases in vesicular transport. , 1993, Current opinion in cell biology.
[19] A. D. Gordon,et al. Correspondence Analysis Handbook. , 1993 .
[20] J. Parsonnet. Helicobacter pylori and gastric cancer. , 1993, Gastroenterology clinics of North America.
[21] C. Kay,et al. Spectroscopic study of the activation and oligomerization of the channel-forming toxin aerolysin: identification of the site of proteolytic activation. , 1992, Biochemistry.
[22] M. Blaser,et al. Purification and characterization of the vacuolating toxin from Helicobacter pylori. , 1992, The Journal of biological chemistry.
[23] M. Blaser,et al. Helicobacter pylori and gastroduodenal disease. , 1992, Annual review of medicine.
[24] S. Bhakdi,et al. Alpha-toxin of Staphylococcus aureus , 1991 .
[25] R. Leunk. Production of a cytotoxin by Helicobacter pylori. , 1991, Reviews of infectious diseases.
[26] P. Sims,et al. Kinetic aspects of the aggregation of Clostridium perfringens theta-toxin on erythrocyte membranes. A fluorescence energy transfer study. , 1991, The Journal of biological chemistry.
[27] S Bhakdi,et al. Alpha-toxin of Staphylococcus aureus. , 1991, Microbiological reviews.
[28] Salvatore Lanzavecchia,et al. POLCA, a library running in a modern environment, implements a protocol for averaging randomly oriented images , 1990, Comput. Appl. Biosci..
[29] J. Heuser,et al. Protocol for 3-D visualization of molecules on mica via the quick-freeze, deep-etch technique. , 1989, Journal of electron microscopy technique.
[30] B. Ehrlich,et al. Channels formed by botulinum, tetanus, and diphtheria toxins in planar lipid bilayers: relevance to translocation of proteins across membranes. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[31] S. Bhakdi,et al. Mechanism of membrane damage by streptolysin-O , 1985, Infection and immunity.
[32] J. Heuser,et al. Procedure for freeze-drying molecules adsorbed to mica flakes. , 1983, Journal of molecular biology.
[33] J. Mekalanos,et al. Enzymic activity of cholera toxin. II. Relationships to proteolytic processing, disulfide bond reduction, and subunit composition. , 1979, The Journal of biological chemistry.
[34] W.,et al. Kinetic Aspects of the Aggregation of Clostridium perfringens & Toxin on Erythrocyte Membranes , 2022 .