Arginine metabolism as a mutualistic strategy in the interaction between Porphyromonas gingivalis and Filifactor alocis

Metabolic cross-feeding is a main driver of microbial mutualism under various stresses. Elevated arginine levels in the periodontal microenvironment reshape pathogen physiology. Here, we discovered that increased arginine levels disrupted the intracellular amino acid metabolism of the periodontal pathogen Porphyromonas gingivalis by repressing glutamate dehydrogenase activity and α-ketoglutarate production via the accumulation of NH3. This perturbation inhibited P. gingivalis growth and was accompanied by increased expression of the PorX/PorY-associated T9SS and enhanced small-peptide acquisition. Given the frequent co-occurrence of P. gingivalis and Filifactor alocis in periodontitis, our findings suggested that F. alocis partially relieved arginine-associated growth inhibition of P. gingivalis through ArcA-dependent arginine degradation, thereby promoting its persistence under high-arginine conditions. This cooperative arginine metabolism is critical for the resilience of microbial communities and may serve as a therapeutic target. Complex microbial communities are often shaped by cooperation. Here, the authors show that high arginine levels suppress the periodontal pathogen Porphyromonas gingivalis, while Filifactor alocis helps it persist by breaking down arginine, revealing a metabolic partnership.

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Publication Details

Journal
Nature Communications
Published
2026-09-08
DOI
https://doi.org/10.1038/s41467-026-77383-6
Primary Topic
Oral microbiology and periodontitis research
Type
article
Field-Weighted Citation Impact
0.00

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article

Arginine metabolism as a mutualistic strategy in the interaction between Porphyromonas gingivalis and Filifactor alocis

Xian Peng, Jiyao Li, Yuqing Li, Yajie Wu et al.
Nature Communications
Oral microbiology and periodontitis research
article

Arginine metabolism as a mutualistic strategy in the interaction between Porphyromonas gingivalis and Filifactor alocis

Xian Peng, Jiyao Li, Yuqing Li, Yajie Wu, Biao Ren, Fangjie Zhou, Xiao Wang, Wenyao Nie
article en

Abstract

Metabolic cross-feeding is a main driver of microbial mutualism under various stresses. Elevated arginine levels in the periodontal microenvironment reshape pathogen physiology. Here, we discovered that increased arginine levels disrupted the intracellular amino acid metabolism of the periodontal pathogen Porphyromonas gingivalis by repressing glutamate dehydrogenase activity and α-ketoglutarate production via the accumulation of NH3. This perturbation inhibited P. gingivalis growth and was accompanied by increased expression of the PorX/PorY-associated T9SS and enhanced small-peptide acquisition. Given the frequent co-occurrence of P. gingivalis and Filifactor alocis in periodontitis, our findings suggested that F. alocis partially relieved arginine-associated growth inhibition of P. gingivalis through ArcA-dependent arginine degradation, thereby promoting its persistence under high-arginine conditions. This cooperative arginine metabolism is critical for the resilience of microbial communities and may serve as a therapeutic target. Complex microbial communities are often shaped by cooperation. Here, the authors show that high arginine levels suppress the periodontal pathogen Porphyromonas gingivalis, while Filifactor alocis helps it persist by breaking down arginine, revealing a metabolic partnership.

Nature Communications
Sichuan University (CN), Henan Tianguan Group (China) (CN), State Key Laboratory of Oral Diseases
National Natural Science Foundation of China, State Key Laboratory of Oral Disease, Natural Science Foundation of Sichuan Province, Sichuan Province Science and Technology Support Program
Zero hunger
Openalex Percentile: Top 10%
Oral microbiology and periodontitis research
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