Advanced age is a recognized risk factor for primary Sjögren’s disease (pSjD), suggesting a role for aging-related mechanisms in its pathogenesis. However, whether cellular senescence directly drives autoimmune inflammation and glandular dysfunction remains unclear. Furthermore, the specific role of senescent fibroblasts within the pSjD microenvironment has not been defined. This study investigates the mechanisms underlying fibroblast senescence and its therapeutic potential in pSjD.
The senescence landscape of salivary glands was assessed by immunohistochemistry, multiplex immunofluorescence, and single-cell RNA sequencing, coupled with computational trajectory and gene regulatory network inference. In vitro, primary salivary gland fibroblasts (SGFs) were treated with interferon-gamma (IFN-γ). Senescence-associated β-galactosidase staining, reactive oxygen species detection, siRNA knockdown, co-immunoprecipitation, dual-luciferase reporter, and transwell migration assays were conducted to elucidate the underlying mechanisms. In vivo, a non-obese diabetic (NOD) mouse model was utilized to evaluate the efficacy of a senolytic combination (dasatinib and quercetin) on salivary flow rates and lymphocytic infiltration.
Integrative analysis of human clinical samples and scRNA-seq revealed a significant accumulation of senescent fibroblasts in pSjD salivary glands. Pharmacological clearance of senescent cells in NOD mice significantly attenuated lymphocytic infiltration and restored salivary function, supporting a pathogenic contribution of fibroblast senescence. Subsequent computational trajectories and in vitro validations identified a senescence-enriched DNAJB1
high
fibroblast subpopulation. Mechanistically, IFN-γ upregulated DNAJB1 transcription via JUND, which was in turn associated with p21-mediated senescence and enhanced CD4⁺ T cell recruitment. Furthermore, in vivo evaluations confirmed that the senolytic intervention effectively suppressed the glandular JUND-DNAJB1-p21 axis, corroborating the mechanistic findings.
These findings indicate that the JUND-DNAJB1-p21 axis contributes to fibroblast senescence and autoimmune pathogenesis in pSjD. Senolytic clearance of senescent cells may represent a potential therapeutic strategy for mitigating glandular dysfunction.
Yingliang Shi, Yi Guo, Hanlin Tu et al.· Immunity & Ageing· 0 citations
N6-methyladenosine (m
6
A) represents the most abundant mRNA modification, yet its role in natural killer (NK) cell development remains incompletely understood. Here we demonstrate that the m
6
A methyltransferase METTL14 plays an indispensable, stage-specific role in early NK cell development.
Mettl14
deficiency at the progenitor stage caused severe NK cell lymphopenia by disrupting the NK progenitor to immature NK cell transition. Paradoxically, residual
Mettl14
-null NK cells exhibited a hypermetabolic state characterized by mTORC1 hyperactivation and enhanced mitochondrial function, which drove both hyperproliferation and activation-induced cell death via p53 and apoptotic pathway activation. Despite developmental defects, these cells demonstrated superior capacity to control melanoma metastasis in vivo. Mechanistically, METTL14 fine-tuned IL-15 responsiveness likely by sustaining SOCS3 expression to restrain JAK-STAT5 signaling. Terminal deletion of
Mettl14
produced no phenotype, underscoring its specific requirement during early development. Our findings establish METTL14 as a crucial checkpoint coordinating transcriptional and metabolic programs to ensure NK cell homeostasis.
Huan Ma, Zhenzhen Tu, Su-Rong Deng et al.· Cell Death & Disease· 0 citations
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