Vitamin D receptor regulates TGF-β signalling in systemic sclerosis

骨化三醇受体 帕利骨化醇 内分泌学 内科学 SMAD公司 纤维化 医学 维生素D与神经学 转化生长因子 癌症研究 CTGF公司 受体 甲状旁腺激素 生长因子 继发性甲状旁腺功能亢进
作者
Pawel Zerr,Stefan Vollath,Katrin Palumbo‐Zerr,Michal Tomčík,Jingang Huang,Alfiya Distler,Christian Beyer,Clara Dees,Kolja Gela,Oliver Distler,Georg Schett,Jörg H. W. Distler
出处
期刊:Annals of the Rheumatic Diseases [BMJ]
卷期号:74 (3): e20-e20 被引量:123
标识
DOI:10.1136/annrheumdis-2013-204378
摘要

Background

Vitamin D receptor (VDR) is a member of the nuclear receptor superfamily. Its ligand, 1,25-(OH)2D, is a metabolically active hormone derived from vitamin D3. The levels of vitamin D3 are decreased in patients with systemic sclerosis (SSc). Here, we aimed to analyse the role of VDR signalling in fibrosis.

Methods

VDR expression was analysed in SSc skin, experimental fibrosis and human fibroblasts. VDR signalling was modulated by siRNA and with the selective agonist paricalcitol. The effects of VDR on Smad signalling were analysed by reporter assays, target gene analyses and coimmunoprecipitation. The effects of paricalcitol were evaluated in the models of bleomycin-induced fibrosis and fibrosis induced by overexpression of a constitutively active transforming growth factor-β (TGF-β) receptor I (TBRICA).

Results

VDR expression was decreased in fibroblasts of SSc patients and murine models of SSc in a TGF-β-dependent manner. Knockdown of VDR enhanced the sensitivity of fibroblasts towards TGF-β. In contrast, activation of VDR by paricalcitol reduced the stimulatory effects of TGF-β on fibroblasts and inhibited collagen release and myofibroblast differentiation. Paricalcitol stimulated the formation of complexes between VDR and phosphorylated Smad3 in fibroblasts to inhibit Smad-dependent transcription. Preventive and therapeutic treatment with paricalcitol exerted potent antifibrotic effects and ameliorated bleomycin- as well as TBRICA-induced fibrosis.

Conclusions

We characterise VDR as a negative regulator of TGF-β/Smad signalling. Impaired VDR signalling with reduced expression of VDR and decreased levels of its ligand may thus contribute to hyperactive TGF-β signalling and aberrant fibroblast activation in SSc.
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