Fluorescence Turn-On Sensor for Gingipains: Selective Detection of Porphyromonas gingivalis in Periodontal Disease

Porphyromonas gingivalis (P.g.), a key pathogen in periodontal disease, plays a critical role in bacterial invasion and is increasingly implicated in systemic conditions, including cardiovascular and neurodegenerative diseases. Its major virulence factors, gingipains, are cysteine proteases essential for pathogenicity. In this study, we introduce Gingitracker, an activity-based fluorescence turn-on sensor for the selective detection of gingipains. Upon covalent binding to the cysteine residue in the active sites of gingipains, Gingitracker undergoes a planar conformational change via the restriction of intramolecular rotation, leading to a significant increase in fluorescence (ΦKgp = 0.54, ΦRgpB = 0.35). In contrast, interactions with control proteases such as mammalian calpain (ΦCalpain = 0.04) and trypsin (ΦTrypsin = 0.03) result in negligible fluorescence, demonstrating Gingitracker's high specificity for gingipains. Gingitracker effectively detects active gingipains in dental plaque samples from periodontitis patients, showing strong correlations with anti-gingipain signals across independent samples (r = 0.73-0.83). These results establish Gingitracker as a sensitive activity-based tool for detecting active gingipains in bacterial and clinical periodontal samples.

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Publication Details

Journal
ACS Sensors
Published
2026-09-12
DOI
https://doi.org/10.1021/acssensors.6c02393
Primary Topic
Oral microbiology and periodontitis research
Type
article
Field-Weighted Citation Impact
0.00

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article

Fluorescence Turn-On Sensor for Gingipains: Selective Detection of Porphyromonas gingivalis in Periodontal Disease

Aizhan Abdildinova, Ae Nim Pae, Lizaveta Gotina, Ja‐Hyun Baik et al.
ACS Sensors
Oral microbiology and periodontitis research
article

Fluorescence Turn-On Sensor for Gingipains: Selective Detection of Porphyromonas gingivalis in Periodontal Disease

Aizhan Abdildinova, Ae Nim Pae, Lizaveta Gotina, Ja‐Hyun Baik, Hira Aziz, Jun‐Seok Lee, Jinyoung Park, Yun Kyung Kim, Sungsu Lim, Barbara Potempa, Yujeong Choi, Changyong Lee, Ha Eun Lee, Jung-Seok Lee, Jan Potempa, Dong Min Kang
article en

Abstract

Porphyromonas gingivalis (P.g.), a key pathogen in periodontal disease, plays a critical role in bacterial invasion and is increasingly implicated in systemic conditions, including cardiovascular and neurodegenerative diseases. Its major virulence factors, gingipains, are cysteine proteases essential for pathogenicity. In this study, we introduce Gingitracker, an activity-based fluorescence turn-on sensor for the selective detection of gingipains. Upon covalent binding to the cysteine residue in the active sites of gingipains, Gingitracker undergoes a planar conformational change via the restriction of intramolecular rotation, leading to a significant increase in fluorescence (ΦKgp = 0.54, ΦRgpB = 0.35). In contrast, interactions with control proteases such as mammalian calpain (ΦCalpain = 0.04) and trypsin (ΦTrypsin = 0.03) result in negligible fluorescence, demonstrating Gingitracker's high specificity for gingipains. Gingitracker effectively detects active gingipains in dental plaque samples from periodontitis patients, showing strong correlations with anti-gingipain signals across independent samples (r = 0.73-0.83). These results establish Gingitracker as a sensitive activity-based tool for detecting active gingipains in bacterial and clinical periodontal samples.

ACS Sensors
University of Science and Technology (YE), Jagiellonian University (PL), Seoul National University (KR), University of Louisville (US), Korea University (KR), Kyung Hee University (KR), Korea Institute of Brain Science (KR), Yonsei University Dental Hospital (KR), University of Louisville Hospital (US), Korea University (JP), Korea University of Science and Technology (KR)
Ministry of Trade, Industry and Energy, Korea Institute of Science and Technology, National Research Foundation of Korea
Openalex Percentile: Top 9%
Oral microbiology and periodontitis research
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