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Merck
CN
  • Critical roles of Clostridium difficile toxin B enzymatic activities in pathogenesis.

Critical roles of Clostridium difficile toxin B enzymatic activities in pathogenesis.

Infection and immunity (2014-11-19)
Shan Li, Lianfa Shi, Zhiyong Yang, Yongrong Zhang, Gregorio Perez-Cordon, Tuxiong Huang, Jeremy Ramsey, Numan Oezguen, Tor C Savidge, Hanping Feng
摘要

TcdB is one of the key virulence factors of Clostridium difficile that is responsible for causing serious and potentially fatal colitis. The toxin contains at least two enzymatic domains: an effector glucosyltransferase domain for inactivating host Rho GTPases and a cysteine protease domain for the delivery of the effector domain into host cytosol. Here, we describe a novel intrabody approach to examine the role of these enzymes of TcdB in cellular intoxication. By screening a single-domain heavy chain (V(H)H) library raised against TcdB, we identified two V(H)H antibodies, 7F and E3, that specifically inhibit TcdB cysteine protease and glucosyltransferase activities, respectively. Cytoplasmic expression of 7F intrabody in Vero cells inhibited TcdB autoprocessing and delayed cellular intoxication, whereas E3 intrabody completely blocked the cytopathic effects of TcdB holotoxin. These data also demonstrate for the first time that toxin autoprocessing occurs after cysteine protease and glucosyltransferase domains translocate into the cytosol of target cells. We further determined the role of the enzymatic activities of TcdB in in vivo toxicity using a sensitive systemic challenge model in mice. Consistent with these in vitro results, a cysteine protease noncleavable mutant, TcdB-L543A, delayed toxicity in mice, whereas glycosyltransferase-deficient TcdB demonstrated no toxicity up to 500-fold of the 50% lethal dose (LD50) when it was injected systemically. Thus, glucosyltransferase but not cysteine protease activity is critical for TcdB-mediated cytopathic effects and TcdB systemic toxicity, highlighting the importance of targeting toxin glucosyltransferase activity for future therapy.

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Sigma-Aldrich
硫酸, ACS reagent, 95.0-98.0%
Sigma-Aldrich
硫酸, 99.999%
Sigma-Aldrich
硫酸, puriss. p.a., for determination of Hg, ACS reagent, reag. ISO, reag. Ph. Eur., 95.0-97.0%
Supelco
硫酸浓缩液, 0.1 M H2SO4 in water (0.2N), eluent concentrate for IC
Sigma-Aldrich
硫酸, puriss., meets analytical specification of Ph. Eur., BP, 95-97%