Anna Andrusaite, Jennifer Lewis, Annika Frede, Andrew Farthing, Verena Kästele, Jennifer Montgomery, Allan Mowat, Elizabeth Mann, Simon Milling
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引用次数: 0
摘要
传统树突状细胞(cDC)是维持保护性免疫反应与无害抗原耐受性之间平衡的核心,尤其是在肠道中。丁酸盐等短链脂肪酸(SCFAs)在调节肠道免疫中发挥着关键作用,但其潜在机制仍不清楚。在这里,我们证明了微生物群衍生的丁酸盐会改变体内肠道 cDC 群体,导致 cDC2 系的数量减少。通过建立一种新型体外培养模型,我们发现丁酸盐具有直接和选择性抑制 cDC 前体发育成 cDC2 的能力,这种作用与 G 蛋白偶联受体(GPCR)无关,而是由于抑制了组蛋白去乙酰化酶 3。最后,在丁酸盐存在的情况下,从体外前 cDC 衍生出的 cDC 表达的成本刺激分子水平较低,对幼稚 T 细胞的刺激能力下降。总之,我们的数据表明,丁酸盐影响了 cDC 的发育轨迹,选择性地抑制了 cDC2 系,降低了它们刺激 T 细胞的能力。这些特性可能有助于解释丁酸盐维持肠道平衡的能力。
Microbiota-derived butyrate inhibits cDC development via HDAC inhibition, diminishing their ability to prime T cells.
Conventional dendritic cells (cDC) are central to maintaining the balance between protective immune responses and tolerance to harmless antigens, especially in the intestine. Short chain fatty acids (SCFAs) such as butyrate play critical roles in regulating intestinal immunity, but the underlying mechanisms remain unclear. Here we demonstrate that microbiota-derived butyrate alters intestinal cDC populations in vivo resulting in decreased numbers of the cDC2 lineage. By establishing a novel in vitro culture model, we show that butyrate has a direct and selective ability to repress the development of cDC2 from cDC precursors, an effect that is independent of G-protein coupled receptors (GPCRs) and is due to inhibition of histone deacetylase 3. Finally, cDC derived from pre-cDC in the presence of butyrate in vitro express lower levels of costimulatory molecules and have a decreased ability to prime naïve T cells. Together, our data show that butyrate affects the developmental trajectory of cDC, selectively repressing the cDC2 lineage and reducing their ability to stimulate T cells. These properties may help explain the ability of butyrate to maintain homeostasis in the intestine.
期刊介绍:
Mucosal Immunology, the official publication of the Society of Mucosal Immunology (SMI), serves as a forum for both basic and clinical scientists to discuss immunity and inflammation involving mucosal tissues. It covers gastrointestinal, pulmonary, nasopharyngeal, oral, ocular, and genitourinary immunology through original research articles, scholarly reviews, commentaries, editorials, and letters. The journal gives equal consideration to basic, translational, and clinical studies and also serves as a primary communication channel for the SMI governing board and its members, featuring society news, meeting announcements, policy discussions, and job/training opportunities advertisements.