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Published on: January 7, 2019
Mirolysin, a LysargiNase from Tannerella forsythia, proteolytically inactivates the human cathelicidin, LL-37
Abstract:
Tannerella forsythia is a periodontal pathogen expressing six secretory proteolytic enzymes with a unique multidomain structure referred to as KLIKK proteases. Two of these proteases, karilysin and mirolysin, were previously shown to protect the bacterium against complement-mediated bactericidal activity. The latter metalloprotease, however, was not characterized at the protein level. Therefore, we purified recombinant mirolysin and subjected it to detailed biochemical characterization. Mirolysin was obtained as a 66 kDa zymogen, which autoproteolytically processed itself into a 31 kDa active form via truncations at both the N- and C-termini. Further autodegradation was prevented by calcium. Substrate specificity was determined by the S1' subsite of the substrate-binding pocket, which shows strong preference for Arg and Lys at the carbonyl side of a scissile peptide bond (P1' residue). The protease cleaved an array of host proteins, including human fibronectin, fibrinogen, complement proteins C3, C4, and C5, and the antimicrobial peptide, LL-37. Degradation of LL-37 abolished not only the bactericidal activity of the peptide, but also its ability to bind lipopolysaccharide (LPS), thus quenching the endotoxin proinflammatory activity. Taken together, these results indicate that, through cleavage of LL-37 and complement proteins, mirolysin might be involved in evasion of the host immune response.
Insights
Tannerella forsythia
Area of Science:
- Microbiology
- Enzymology
- Immunology
Background:
- Tannerella forsythia is a periodontal pathogen.
- It secretes KLIKK proteases, including mirolysin.
- Mirolysin's protein-level function was previously uncharacterized.
Purpose of the Study:
- To biochemically characterize the metalloprotease mirolysin.
- To understand mirolysin's substrate specificity and function.
Main Methods:
- Purification of recombinant mirolysin.
- Biochemical characterization including zymogen activation and substrate cleavage assays.
- Analysis of mirolysin's effect on host proteins and antimicrobial peptides.
Main Results:
- Mirolysin was purified as an active 31 kDa metalloprotease from a 66 kDa zymogen.
- It exhibits specificity for Arg/Lys at the P1' position.
- Mirolysin degraded host proteins (fibronectin, fibrinogen, complement C3/C4/C5) and the antimicrobial peptide LL-37.
- LL-37 degradation by mirolysin neutralized its bactericidal and LPS-binding activities, reducing inflammation.
Conclusions:
- Mirolysin is an active metalloprotease secreted by Tannerella forsythia.
- Cleavage of LL-37 and complement proteins suggests mirolysin contributes to immune evasion.
- Mirolysin may play a role in the pathogenesis of periodontitis by subverting host defenses.

