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Published on: May 4, 2018
Necrotic activity of ExhC from Mammaliicoccus sciuri is mediated by specific amino acid residues
Carolina Gismene1, Jorge Enrique Hernández González1, Marília de Freitas Calmon2
1Multiuser Center for Biomolecular Innovation, São Paulo State University - UNESP, São José do Rio Preto, SP, Brazil.
Abstract:
Mammaliicoccus sciuri, a commensal and pathogenic bacterium of significant clinical and veterinary relevance, expresses exfoliative toxin C (ExhC), a specific glutamyl endopeptidase belonging to the chymotrypsin family as the principal virulence factor. However, unlike most members of this family, ETs are inactive against a wide range of substrates and possess exquisite specificity for desmoglein-1 (Dsg1), a cadherin-like adhesion molecule that is crucial to maintain tissue integrity, thereby preventing the separation of skin cells and the entry of pathogens. ExhC is of clinical importance since in addition to causing exfoliation in pigs and mice, it induces necrosis in multiple mammalian cell lines, a property not observed for other ETs. Previous experiments have implicated the ExhC79-128 fragment in causing necrosis. Site-directed mutagenesis of specific residues within this fragment were studied and led to the design of an ExhC variant containing four-point mutations (ExhCmut4) lacking necrotic potential but retaining nearly wild-type (wt) levels of enzymatic activity. Moreover, the determination of the ExhCwt and ExhCmut4 crystal structures identified the conformation in the necrosis-linked region. These results constitute an important step toward the understanding of the mechanisms underlying the necrotic and epidermolytic activity of ExhC.
Insights
Mammaliicoccus sciuri exfoliative toxin C (ExhC) causes skin exfoliation and necrosis. Researchers identified a specific fragment responsible for necrosis, creating a less harmful variant while retaining enzymatic activity.
Area of Science:
- Microbiology
- Biochemistry
- Structural Biology
Background:
- Mammaliicoccus sciuri produces exfoliative toxin C (ExhC), a key virulence factor.
- ExhC is a specific glutamyl endopeptidase targeting desmoglein-1 (Dsg1), crucial for skin integrity.
- ExhC causes exfoliation and necrosis, unlike other exfoliative toxins (ETs).
Purpose of the Study:
- To investigate the mechanism of ExhC-induced necrosis.
- To identify the specific region of ExhC responsible for necrotic activity.
- To develop a less toxic ExhC variant with retained enzymatic function.
Main Methods:
- Site-directed mutagenesis was used to alter specific residues in the ExhC79-128 fragment.
- An ExhC variant (ExhCmut4) with four point mutations was engineered.
- Crystal structures of wild-type (ExhCwt) and ExhCmut4 were determined.
Main Results:
- The ExhC79-128 fragment was implicated in ExhC-induced necrosis.
- ExhCmut4 exhibited no necrotic potential but maintained near wild-type enzymatic activity.
- The crystal structures revealed the conformation of the necrosis-linked region.
Conclusions:
- The study elucidates the structural basis for ExhC's necrotic activity.
- A non-necrotic ExhC variant was successfully developed, offering potential therapeutic applications.
- These findings advance the understanding of ExhC's virulence mechanisms.
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