Journal of Immunology 2015-09-01

A Metalloproteinase Mirolysin of Tannerella forsythia Inhibits All Pathways of the Complement System.

Monika Jusko, Jan Potempa, Danuta Mizgalska, Ewa Bielecka, Miroslaw Ksiazek, Kristian Riesbeck, Peter Garred, Sigrun Eick, Anna M Blom

文献索引:J. Immunol. 195 , 2231-40, (2015)

全文:HTML全文

摘要

Recent reports focusing on virulence factors of periodontal pathogens implicated proteinases as major determinants of remarkable pathogenicity of these species, with special emphasis on their capacity to modulate complement activity. In particular, bacteria-mediated cleavage of C5 and subsequent release of C5a seems to be an important phenomenon in the manipulation of the local inflammatory response in periodontitis. In this study, we present mirolysin, a novel metalloproteinase secreted by Tannerella forsythia, a well-recognized pathogen strongly associated with periodontitis. Mirolysin exhibited a strong effect on all complement pathways. It inhibited the classical and lectin complement pathways due to efficient degradation of mannose-binding lectin, ficolin-2, ficolin-3, and C4, whereas inhibition of the alternative pathway was caused by degradation of C5. This specificity toward complement largely resembled the activity of a previously characterized metalloproteinase of T. forsythia, karilysin. Interestingly, mirolysin released the biologically active C5a peptide in human plasma and induced migration of neutrophils. Importantly, we demonstrated that combination of mirolysin with karilysin, as well as a cysteine proteinase of another periodontal pathogen, Prevotella intermedia, resulted in a strong synergistic effect on complement. Furthermore, mutant strains of T. forsythia, devoid of either mirolysin or karilysin, showed diminished survival in human serum, providing further evidence for the synergistic inactivation of complement by these metalloproteinases. Taken together, our findings on interactions of mirolysin with complement significantly add to the understanding of immune evasion strategies of T. forsythia and expand the knowledge on molecular mechanisms driving pathogenic events in the infected periodontium.Copyright © 2015 by The American Association of Immunologists, Inc.


相关化合物

  • 纯碱
  • 叠氮化钠
  • 氯化钠
  • 5-(((2,5-二氧吡咯...
  • 红霉素
  • 4-羟乙基哌嗪乙磺酸
  • 氯化钠-35cl
  • 邻苯二胺盐酸盐
  • 氯霉素
  • N,O-双(三甲基硅基...

相关文献:

Kafirin adsorption on ion-exchange resins: isotherm and kinetic studies.

2014-08-22

[J. Chromatogr. A. 1356 , 105-16, (2014)]

Studying the chemistry of cationized triacylglycerols using electrospray ionization mass spectrometry and density functional theory computations.

2014-08-01

[J. Am. Soc. Mass Spectrom. 25(8) , 1421-40, (2014)]

Embryonic development and maternal regulation of murine circadian clock function.

2015-04-01

[Chronobiol. Int. 32(3) , 416-27, (2015)]

Protective role of adenylate cyclase in the context of a live pertussis vaccine candidate.

2014-01-01

[Microbes Infect. 16(1) , 51-60, (2014)]

Coffee silverskin: a possible valuable cosmetic ingredient.

2015-03-01

[Pharm. Biol. 53(3) , 386-94, (2015)]

更多文献...