Cwp84, a Surface-Associated Protein of Clostridium difficile , Is a Cysteine Protease with Degrading Activity on Extracellular Matrix Proteins

Author:

Janoir Claire1,Péchiné Séverine1,Grosdidier Charlotte1,Collignon Anne12

Affiliation:

1. Université de Paris-Sud XI, Faculté de Pharmacie, Département de microbiologie, USC INRA, EA 40-43, 92296 Châtenay-Malabry Cedex, France

2. Hôpital Jean Verdier, AP-HP, Bondy, France

Abstract

ABSTRACT Clostridium difficile pathogenicity is mediated mainly by its A and B toxins, but the colonization process is thought to be a necessary preliminary step in the course of infection. The aim of this study was to characterize the Cwp84 protease of C. difficile , which is highly immunogenic in patients with C. difficile -associated disease and is potentially involved in the pathogenic process. Cwp84 was purified as a recombinant His-tagged protein, and specific antibodies were generated in rabbits. Treatment of multiple-band-containing eluted fractions with a reducing agent or with trypsin led to accumulation of a unique protein species with an estimated molecular mass of 61 kDa, corresponding most likely to mature autoprocessed Cwp84 (mCwp84). mCwp84 showed concentration-dependent caseinolytic activity, with maximum activity at pH 7.5. The Cwp84 activity was inhibited by various cysteine protease inhibitors, such as the specific inhibitor E64, and the anti-Cwp84-specific antibodies. Using fractionation experiments followed by immunoblot detection, the protease was found to be associated with the S-layer proteins, mostly as a nonmature species. Proteolytic assays were performed with extracellular matrix proteins to assess the putative role of Cwp84 in the pathogenicity of C. difficile . No degrading activity was detected with type IV collagen. In contrast, Cwp84 exhibited degrading activity with fibronectin, laminin, and vitronectin, which was neutralized by the E64 inhibitor and specific antibodies. In vivo, this proteolytic activity could contribute to the degradation of the host tissue integrity and to the dissemination of the infection.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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