Altered Actinobacteria and Firmicutes Phylum Associated Epitopes in Patients With Parkinson's Disease
1Genetic Testing Lab, The Second Affiliated Hospital of Guangzhou University of Chinese Medicine, Guangzhou, China.
Abstract:
Recent evidence suggests that inflammation was participated in the pathogenesis of PD, thus, to understand the potential mechanism of gut microbiota in the pathogenesis of Parkinson's disease (PD), we performed a metagenomic analysis of fecal samples from PD patient and controls. Using a two-stage metagenome-wide association strategy, fecal DNA samples from 69 PD patients and 244 controls in three groups (comprising 66 spouses, 97 age-matched, and 81 normal samples, respectively) were analyzed, and differences between candidate gut microbiota and microbiota-associated epitopes (MEs) were compared. In the study, 27 candidate bacterial biomarkers and twenty-eight candidate epitope peptides were significantly different between the PD patients and control groups. Further, enriched 4 and 13 MEs in PD were positively associated with abnormal inflammatory indicators [neutrophil percentage (NEUT.1), monocyte count/percentage (MONO/MONO.1), white blood cell count (WBC)] and five candidate bacterial biomarkers (c_Actinobacteria, f_Bifidobacteriaceae, g_Bifidobacterium, o_Bifidobacteriales, p_Actinobacteria) from Actinobacteria phylum, and they were also positively associated with histidine degradation and proline biosynthesis pathways, respectively. Additionally, enriched 2 MEs and 1 ME in PD were positively associated with above inflammatory indicators and two bacteria (f_Lactobacillaceae, g_Lactobacillus) from Firmicutes phylum, and they were also positively associated with pyruvate fermentation to propanoate I and negatively associated with isopropanol biosynthesis, respectively. Of these MEs, two MEs from GROEL2, RPSC were derived from Mycobacterium tuberculosis, triggered the T cell immune response, as previously reported. Additionally, other candidate epitope peptides derived from Mycobacterium tuberculosis and Mycobacterium leprae may also have potential immune effects in PD. In all, the altered MEs in PD may relate to abnormalities in immunity and glutamate and propionate metabolism, which furthers our understanding of the pathogenesis of PD.
Insights
Gut microbiota alterations and associated immune responses may contribute to Parkinson's disease (PD) pathogenesis. This study identified distinct bacterial biomarkers and microbial epitopes linked to inflammation and metabolic pathways in PD patients.
Area of Science:
- Microbiome research
- Immunology
- Neurodegenerative disease research
Background:
- Inflammation is implicated in Parkinson's disease (PD) pathogenesis.
- The role of gut microbiota in PD development requires further investigation.
Purpose of the Study:
- To explore the potential mechanisms of gut microbiota in PD pathogenesis.
- To identify differences in gut microbiota and their associated epitopes between PD patients and controls.
Main Methods:
- Metagenomic analysis of fecal samples from 69 PD patients and 244 controls.
- Two-stage metagenome-wide association study to compare gut microbiota and microbiota-associated epitopes (MEs).
Main Results:
- Identified 27 bacterial biomarkers and 28 epitope peptides significantly different in PD patients.
- Enriched MEs in PD were associated with inflammatory indicators, specific bacteria from Actinobacteria and Firmicutes phyla, and altered metabolic pathways.
- Some MEs derived from Mycobacterium tuberculosis and Mycobacterium leprae showed potential immune effects in PD.
Conclusions:
- Altered MEs in PD may be linked to immune system abnormalities.
- Changes in glutamate and propionate metabolism associated with gut microbiota may contribute to PD pathogenesis.
- This study enhances understanding of the gut microbiome's role in PD development.
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