Lactoferrin Potentiates Inducible Regulatory T Cell Differentiation through TGF-β Receptor III Binding and Activation of Membrane-Bound TGF-β

FOXP3型 化学 受体 转化生长因子 乳铁蛋白 细胞生物学 磷酸化 转化生长因子β 信号转导 内皮糖蛋白 生物 免疫学 免疫系统 生物化学 川地34 干细胞
作者
Young‐Saeng Jang,Ha‐Eon Song,Goo-Young Seo,Hyeon-Ju Jo,Sunhee Park,Hui-Won Park,Taegyu Kim,Seung Goo Kang,Sung‐il Yoon,Hyun‐Jeong Ko,Geun‐Shik Lee,Seok‐Rae Park,Pyeung-Hyeun Kim
出处
期刊:Journal of Immunology [The American Association of Immunologists]
卷期号:207 (10): 2456-2464 被引量:2
标识
DOI:10.4049/jimmunol.2100326
摘要

Abstract Lactoferrin (LF) is known to possess anti-inflammatory activity, although its mechanisms of action are not well-understood. The present study asked whether LF affects the commitment of inducible regulatory T cells (Tregs). LF substantially promoted Foxp3 expression by mouse activated CD4+T cells, and this activity was further enhanced by TGF-β1. Interestingly, blocking TGF-β with anti–TGF-β Ab completely abolished LF-induced Foxp3 expression. However, no significant amount of soluble TGF-β was released by LF-stimulated T cells, suggesting that membrane TGF-β (mTGF-β) is associated. Subsequently, it was found that LF binds to TGF-β receptor III, which induces reactive oxygen species production and diminishes the expression of mTGF-β–bound latency-associated peptide, leading to the activation of mTGF-β. It was followed by phosphorylation of Smad3 and enhanced Foxp3 expression. These results suggest that LF induces Foxp3+ Tregs through TGF-β receptor III/reactive oxygen species–mediated mTGF-β activation, triggering canonical Smad3-dependent signaling. Finally, we found that the suppressive activity of LF-induced Tregs is facilitated mainly by CD39/CD73-induced adenosine generation and that this suppressor activity alleviates inflammatory bowel disease.
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