Nisin bacteriocin blocks T. denticola-triggered MMP2 activation and pathogen internalization via TLR2

P Pachiyappan Kamarajan A Allan Radaic H Hossein Beheshti M Mishri Parikh S Sarah Lo J J Christopher Fenno Y Yvonne L. Hernandez Kapila

Abstract

Abstract We examined Treponema denticola -induced dysregulation of toll-like receptor (TLR) signaling and its downstream effects on matrix metalloproteinase 2 (MMP2) expression and activation in periodontal cells, and whether the antimicrobial peptide nisin could modulate this process. T. denticola and its outer membrane protease dentilisin/PrtP activated MMP2, whereas a dentilisin/PrtP-deficient T. denticola mutant did not, and nisin attenuated this response. Dentilisin/PrtP directly activated recombinant MMP2 in vitro. T. denticola -mediated MMP2 activation was TLR2-dependent, since TLR2 suppression abrogated MMP2 activation, reduced MMP2 mRNA expression, and reduced T. denticola internalization. Nisin significantly inhibited T. denticola internalization. Computational modeling suggests dentilisin/PrtP directly binds pro-MMP2, whereas nisin binds dentilisin/PrtP but not pro-MMP2. Thus, nisin may interfere with MMP2 activation by binding to dentilisin/PrtP. These findings reveal a novel mechanism by which T. denticola and nisin regulate MMP2, and underscore nisin’s potential as a therapeutic for modulating bacterial-mediated tissue damage during periodontal disease.

Article Details

Volume / Issue Vol. 16, Issue 1
Published March 11, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (7)

P

Pachiyappan Kamarajan

A

Allan Radaic

H

Hossein Beheshti

M

Mishri Parikh

S

Sarah Lo

J

J Christopher Fenno

Y

Yvonne L. Hernandez Kapila