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Level of Foxp3, DNMTs, methylation of Foxp3 promoter region, and CD4 + CD25 + CD127low regulatory T cells in vulvar lichen sclerosus

TLDR
In this paper, the authors investigated the pathogenesis of vulvar lichen sclerosus (VLS) by analyzing the level of Foxp3, DNMTs, methylation of FoxP3 promoter region, and CD4 + CD25 + CD127low Regulatory T cells (Tregs).
Abstract
This study is to investigate the pathogenesis of vulvar lichen sclerosus (VLS) by analyzing the level of Foxp3, DNMTs, methylation of Foxp3 promoter region, and CD4 + CD25 + CD127low Regulatory T cells (Tregs). This study enrolled 15 VLS patients and 25 controls. Lesional and extralesional vulvar skin tissues, normal vulvar skin tissues and peripheral blood were collected. Compared with the control group, Foxp3 protein in the lesional and extralesional skin of VLS group was significantly reduced. The levels of DNMT1 and DNMT3b proteins in lesional skin of VLS group were significantly increased. There was no difference in the total methylation rates of the promoter region of the Foxp3 gene. The methylation rates of CpG1, CpG4, CpG9, and CpG10 were significantly higher in lesional skin of VLS group than in control group. There was no correlation between the total methylation rates of 10 CpG sites and the level of Foxp3 and DNMT1 proteins; there was a positive correlation between Foxp3 and DNMT1 protein in lesional skin of VLS group (r = 0.675, p < 0.05), and a negative correlation (r = -0.665, p < 0.05) in extralesional skin of VLS group. However, there was no correlation of Foxp3 with DNMT3b. The number of CD4 + CD25 + CD127low Tregs VLS decreased significantly. The expression of Foxp3 protein and the quantity of CD4 + CD25 + CD127low Tregs in patients with VLS decreased, which may cause local or systemic abnormal immunosuppression of Tregs, leading to the occurrence of VLS. This may be related with methylation or DNMT1, which needs further verification.

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Citations
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Journal ArticleDOI

Vulvar Lichen Sclerosus from Pathophysiology to Therapeutic Approaches: Evidence and Prospects

TL;DR: In this paper, the authors reviewed the most up-to-date knowledge on VLS etiopathogenesis and considered the available therapies through the lens of a plausible pathogenetic model.
Journal ArticleDOI

Lichen sclerosus: The 2023 update

TL;DR: Lichen sclerosus (LS) is an underdiagnosed inflammatory mucocutaneous condition affecting the anogenital areas as mentioned in this paper , which involves factors such as a genetic predisposition and an immune-mediated Th1-specific IFNγ-induced phenotype.
References
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Journal ArticleDOI

The DNA methyltransferase family: a versatile toolkit for epigenetic regulation

TL;DR: Analysis of molecular interactions and changes in gene copy numbers modulate the activity of DNMTs in diverse gene regulatory functions, including transcriptional silencing, transcriptional activation and post-transcriptional regulation by DNMT2-dependent tRNA methylation enables the DNMT family to function as a versatile toolkit for epigenetic regulation.
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Molecular Mechanisms Directing PRC2 Recruitment and H3K27 Methylation

TL;DR: This review discusses the molecular mechanisms proposed to take part in modulating PRC2 recruitment and shaping H3K27 methylation patterns across the genome and discusses existing evidence for functional diversity between distinct subsets ofPRC2 complexes.
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Active Demethylation of the Foxp3 Locus Leads to the Generation of Stable Regulatory T Cells within the Thymus

TL;DR: This study shows that commitment to a stable lineage occurred during early stages of murine thymic Treg development by engraving of lineage-specific epigenetic marks in parallel with establishment of a Treg-specific gene expression profile.
Journal ArticleDOI

Metabolic control of T H 17 and induced T reg cell balance by an epigenetic mechanism

TL;DR: Targeting a glutamate-dependent metabolic pathway represents a new strategy for developing therapeutic agents against TH17-mediated autoimmune diseases and selective inhibition of GOT1 with (aminooxy)acetic acid ameliorated experimental autoimmune encephalomyelitis in a therapeutic mouse model.
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CD4(+)CD25 (+)CD127 (low/-) T cells: a more specific Treg population in human peripheral blood.

TL;DR: It is shown that CD4+CD25+CD127low/− can be used to quantitate Treg cells in individuals with systemic lupus erythematosus supporting the use of CD4-CD25-CD127Low/− to identify human T Reg cells.
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