Literature for peptidase C80.003: self-cleaving toxin B (Clostridium-type)
(Topics flags: S Structure, P Specificity, I Inhibitor, E Expression. To select only the references relevant to a single topic, click the link above. See explanation.)
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Ivarsson,M.E., Durantie,E., Huberli,C., Huwiler,S., Hegde,C., Friedman,J., Altamura,F., Lu,J., Verdu,E.F., Bercik,P., Logan,S.M., Chen,W., Leroux,J.C. and Castagner,B.
Small-molecule allosteric triggers of Clostridium difficile toxin B auto-proteolysis as a therapeutic strategy
Cell Chem Biol26, 17-26. PubMed Europe PubMed DOI -
Chen,P., Tao,L., Wang,T., Zhang,J., He,A., Lam,K.H., Liu,Z., He,X., Perry,K., Dong,M. and Jin,R.
Structural basis for recognition of frizzled proteins by Clostridium difficile toxin B
Science360, 664-669. PubMed Europe PubMed DOI -
Chen,X. and Kelly,C.P.
On and off: a dual role for cysteine protease autoprocessing of C difficile toxin B on cytotoxicity vs proinflammatory toxin actions?
Cell Mol Gastroenterol Hepatol5, 654-655. PubMed Europe PubMed DOI -
di Masi,A., Leboffe,L., Polticelli,F., Tonon,F., Zennaro,C., Caterino,M., Stano,P., Fischer,S., Hagele,M., Muller,M., Kleger,A., Papatheodorou,P., Nocca,G., Arcovito,A., Gori,A., Ruoppolo,M., Barth,H., Petrosillo,N., Ascenzi,P. and Di Bella,S.
Human serum albumin is an essential component of the host defense mechanism against Clostridium difficile intoxication
J Infect Dis218, 1424-1435. PubMed Europe PubMed DOI -
Zhang,Y., Li,S., Yang,Z., Shi,L., Yu,H., Salerno-Goncalves,R., Saint Fleur,A. and Feng,H.
Cysteine protease-mediated autocleavage of Clostridium difficile toxins regulates their proinflammatory activity
Cell Mol Gastroenterol Hepatol5, 611-625. PubMed Europe PubMed DOI -
Bender,K.O., Garland,M., Ferreyra,J.A., Hryckowian,A.J., Child,M.A., Puri,A.W., Solow-Cordero,D.E., Higginbottom,S.K., Segal,E., Banaei,N., Shen,A., Sonnenburg,J.L. and Bogyo,M.
A small-molecule antivirulence agent for treating Clostridium difficile infection
Sci Transl Med7, 306ra148-306ra. PubMed Europe PubMed DOI I -
Li,S., Shi,L., Yang,Z., Zhang,Y., Perez-Cordon,G., Huang,T., Ramsey,J., Oezguen,N., Savidge,T.C. and Feng,H.
Critical roles of Clostridium difficile toxin B enzymatic activities in pathogenesis
Infect Immun83, 502-513. PubMed Europe PubMed DOI -
Murase,T., Eugenio,L., Schorr,M., Hussack,G., Tanha,J., Kitova,E.N., Klassen,J.S. and Ng,K.K.
Structural basis for antibody recognition in the receptor-binding domains of toxins A and B from Clostridium difficile
J Biol Chem289, 2331-2343. PubMed Europe PubMed DOI -
Olling,A., Huls,C., Goy,S., Muller,M., Krooss,S., Rudolf,I., Tatge,H. and Gerhard,R.
The combined repetitive oligopeptides of Clostridium difficile toxin A counteract premature cleavage of the glucosyl-transferase domain by stabilizing protein conformation
Toxins (Basel)6, 2162-2176. PubMed Europe PubMed DOI -
Li,S., Shi,L., Yang,Z. and Feng,H.
Cytotoxicity of Clostridium difficile toxin B does not require cysteine protease-mediated autocleavage and release of the glucosyltransferase domain into the host cell cytosol
Pathog Dis67, 11-18. PubMed Europe PubMed DOI -
Zhang,Y., Shi,L., Li,S., Yang,Z., Standley,C., Yang,Z., Zhuge,R., Savidge,T., Wang,X. and Feng,H.
A segment of 97 amino acids within the translocation domain of Clostridium difficile toxin B is essential for toxicity
PLoS ONE8, e58634-e58634. PubMed Europe PubMed DOI -
Chumbler,N.M., Farrow,M.A., LaPierre,L.A., Franklin,J.L., Haslam,D., Goldenring,J.R. and Lacy,D.B.
Clostridium difficile toxin B causes epithelial cell necrosis through an autoprocessing-independent mechanism
PLoS Pathog8, e1003072-e1003072. PubMed Europe PubMed DOI -
Shen,A. and Bogyo,M.
Self-cleaving bacterial toxins
[ISSN:978-0-12-407743-0]3, 2350-2355. DOI -
Guttenberg,G., Papatheodorou,P., Genisyuerek,S., Lu,W., Jank,T., Einsle,O. and Aktories,K.
Inositol hexakisphosphate-dependent processing of Clostridium sordellii lethal toxin and Clostridium novyi alpha-toxin
J Biol Chem286, 14779-14786. PubMed Europe PubMed DOI P -
Shen,A., Lupardus,P.J., Gersch,M.M., Puri,A.W., Albrow,V.E., Garcia,K.C. and Bogyo,M.
Defining an allosteric circuit in the cysteine protease domain of Clostridium difficile toxins
Nat Struct Mol Biol18, 364-371. PubMed Europe PubMed DOI -
Albesa-Jove,D., Bertrand,T., Carpenter,E.P., Swain,G.V., Lim,J., Zhang,J., Haire,L.F., Vasisht,N., Braun,V., Lange,A., von Eichel-Streiber,C., Svergun,D.I., Fairweather,N.F. and Brown,K.A.
Four distinct structural domains in Clostridium difficile toxin B visualized using SAXS
J Mol Biol396, 1260-1270. PubMed Europe PubMed DOI S -
Pruitt,R.N., Chambers,M.G., Ng,K.K., Ohi,M.D. and Lacy,D.B.
Structural organization of the functional domains of Clostridium difficile toxins A and B
Proc Natl Acad Sci U S A107, 13467-13472. PubMed Europe PubMed DOI S -
Puri,A.W., Lupardus,P.J., Deu,E., Albrow,V.E., Garcia,K.C., Bogyo,M. and Shen,A.
Rational design of inhibitors and activity-based probes targeting Clostridium difficile virulence factor TcdB
Chem Biol17, 1201-1211. PubMed Europe PubMed DOI S I -
Egerer,M., Giesemann,T., Herrmann,C. and Aktories,K.
Autocatalytic processing of Clostridium difficile toxin B. Binding of inositol hexakisphosphate
J Biol Chem284, 3389-3395. PubMed Europe PubMed DOI -
Giesemann,T., Guttenberg,G. and Aktories,K.
Human alpha-defensins inhibit Clostridium difficile toxin B
Gastroenterology134, 2049-2058. PubMed Europe PubMed DOI -
Giesemann,T., Egerer,M., Jank,T. and Aktories,K.
Processing of Clostridium difficile toxins
J Med Microbiol57, 690-696. PubMed Europe PubMed DOI -
Yang,G., Zhou,B., Wang,J., He,X., Sun,X., Nie,W., Tzipori,S. and Feng,H.
Expression of recombinant Clostridium difficile toxin A and B in Bacillus megaterium
BMC Microbiol8, 192-192. PubMed Europe PubMed DOI E -
Egerer,M., Giesemann,T., Jank,T., Satchell,K.J. and Aktories,K.
Auto-catalytic cleavage of Clostridium difficile toxins A and B depends on cysteine protease activity
J Biol Chem282, 25314-25321. PubMed Europe PubMed DOI -
Reineke,J., Tenzer,S., Rupnik,M., Koschinski,A., Hasselmayer,O., Schrattenholz,A., Schild,H. and von Eichel-Streiber,C.
Autocatalytic cleavage of Clostridium difficile toxin B
Nature446, 415-419. PubMed Europe PubMed DOI -
Reinert,D.J., Jank,T., Aktories,K. and Schulz,G.E.
Structural basis for the function of Clostridium difficile toxin B
J Mol Biol351, 973-981. PubMed Europe PubMed DOI S -
Rupnik,M., Pabst,S., Rupnik,M., von Eichel-Streiber,C., Urlaub,H. and Soling,H.D.
Characterization of the cleavage site and function of resulting cleavage fragments after limited proteolysis of Clostridium difficile toxin B (TcdB) by host cells
Microbiology (Reading)151, 199-208. PubMed Europe PubMed DOI P -
Voth,D.E. and Ballard,J.D.
Clostridium difficile toxins: mechanism of action and role in disease
Clin Microbiol Rev18, 247-263. PubMed Europe PubMed DOI -
Qa'Dan,M., Spyres,L.M. and Ballard,J.D.
pH-induced conformational changes in Clostridium difficile toxin B
Infect Immun68, 2470-2474. PubMed Europe PubMed DOI -
Hofmann,F., Busch,C., Prepens,U., Just,I. and Aktories,K.
Localization of the glucosyltransferase activity of Clostridium difficile toxin B to the N-terminal part of the holotoxin
J Biol Chem272, 11074-11078. PubMed Europe PubMed DOI -
Green,G.A., Schue,V. and Monteil,H.
Cloning and characterization of the cytotoxin L-encoding gene of Clostridium sordellii: homology with Clostridium difficile cytotoxin B
Gene161, 57-61. PubMed Europe PubMed DOI -
Barroso,L.A., Moncrief,J.S., Lyerly,D.M. and Wilkins,T.D.
Mutagenesis of the Clostridium difficile toxin B gene and effect on cytotoxic activity
Microb Pathog16, 297-303. PubMed Europe PubMed DOI -
von Eichel-Streiber,C., Laufenberg-Feldmann,R., Sartingen,S., Schulze,J. and Sauerborn,M.
Comparative sequence analysis of the Clostridium difficile toxins A and B
Mol Gen Genet233, 260-268. PubMed Europe PubMed DOI -
Lyerly,D.M., Krivan,H.C. and Wilkins,T.D.
Clostridium difficile: its disease and toxins
Clin Microbiol Rev1, 1-18. PubMed Europe PubMed
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