Longitudinal gut microbiome analyses and blooms of pathogenic strains during lupus disease flares

系统性红斑狼疮 微生物群 免疫学 生物 疾病 狼疮性肾炎 遗传学 医学 内科学
作者
Doua F. Azzouz,Ze Chen,Peter Izmirly,Lea Ann Chen,Zhi Li,Chongda Zhang,David Mieles,Kate Trujillo,Adriana Heguy,Alejandro Pironti,G. Putzel,Dominik Schwudke,David Fenyö,Jill P. Buyon,Alexander V. Alekseyenko,Nicolas Gisch,Gregg J. Silverman
出处
期刊:Annals of the Rheumatic Diseases [BMJ]
卷期号:82 (10): 1315-1327 被引量:60
标识
DOI:10.1136/ard-2023-223929
摘要

OBJECTIVE: Whereas genetic susceptibility for systemic lupus erythematosus (SLE) has been well explored, the triggers for clinical disease flares remain elusive. To investigate relationships between microbiota community resilience and disease activity, we performed the first longitudinal analyses of lupus gut-microbiota communities. METHODS: In an observational study, taxononomic analyses, including multivariate analysis of ß-diversity, assessed time-dependent alterations in faecal communities from patients and healthy controls. From gut blooms, strains were isolated, with genomes and associated glycans analysed. RESULTS: (RG) occurred at times of high-disease activity, and were detected in almost half of patients during lupus nephritis (LN) disease flares. Whole genome sequence analysis of RG strains isolated during these flares documented 34 genes postulated to aid adaptation and expansion within a host with an inflammatory condition. Yet, the most specific feature of strains found during lupus flares was the common expression of a novel type of cell membrane-associated lipoglycan. These lipoglycans share conserved structural features documented by mass spectroscopy, and highly immunogenic repetitive antigenic-determinants, recognised by high-level serum IgG2 antibodies, that spontaneously arose, concurrent with RG blooms and lupus flares. CONCLUSIONS: Our findings rationalise how blooms of the RG pathobiont may be common drivers of clinical flares of often remitting-relapsing lupus disease, and highlight the potential pathogenic properties of specific strains isolated from active LN patients.
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