Loss of PI3Kδ Activity Drives Autoimmune Colitis by Impairing Extrathymic Treg Differentiation

IF 3.7 3区 医学 Q2 IMMUNOLOGY
Ee Lyn Lim, Yamin Qian, Fuminori Sugihara, Atsushi Tanaka, Shimon Sakaguchi
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Abstract

Peripherally derived regulatory T cells (pTregs) have a prominent role in maintaining intestinal immune homeostasis. In cases of phosphoinositide-3-kinase δ (PI3Kδ) inactivation, such as in patients receiving PI3Kδ inhibitor idelalisib as a cancer treatment, breakdown of intestinal immune tolerance occurs frequently in the form of diarrhea and colon inflammation. In a mouse model of systemic PI3Kδ inactivation, both enhancement of antitumor immunity and colitis have been described as a result of Treg impairment. However, in view of the critical role for Tregs in the prevention of systemic autoimmunity, the basis for such tissue-restricted breach of immune tolerance upon loss of PI3Kδ function is not yet understood. We report here that mice lacking PI3Kδ activity do not suffer a general defect in Treg immunosuppression, but specifically fail to develop Helios pTregs in the colon. We demonstrate reduced extrathymic Treg induction, in vitro and in vivo, from naïve CD4+ T cells with inactive PI3Kδ, along with dysregulation of a tissue-resident phenotype. These results suggest a nonredundant role for PI3Kδ-dependent pTreg differentiation in maintaining tolerance to commensal microbial antigens in the gut.

Abstract Image

PI3Kδ活性的丧失通过损害胸腺外Treg分化驱动自身免疫性结肠炎。
外周调节性T细胞(pTregs)在维持肠道免疫稳态中起着重要作用。在磷酸肌醇-3-激酶δ (PI3Kδ)失活的情况下,例如接受PI3Kδ抑制剂idelalisib作为癌症治疗的患者,肠道免疫耐受的破坏经常以腹泻和结肠炎症的形式发生。在一个全身PI3Kδ失活的小鼠模型中,抗肿瘤免疫和结肠炎的增强都被描述为Treg损伤的结果。然而,鉴于Tregs在预防系统性自身免疫中的关键作用,PI3Kδ功能丧失导致这种组织限制性免疫耐受破坏的基础尚不清楚。我们在这里报道,缺乏PI3Kδ活性的小鼠在Treg免疫抑制方面没有普遍缺陷,但在结肠中特异性地不能发育Helios- ptreg。我们在体外和体内证明,具有PI3Kδ失活的naïve CD4+ T细胞胸腺外Treg诱导减少,同时组织常驻表型失调。这些结果表明,pi3k δ依赖性pTreg分化在维持肠道对共生微生物抗原的耐受性方面具有非冗余作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
8.30
自引率
3.70%
发文量
224
审稿时长
2 months
期刊介绍: The European Journal of Immunology (EJI) is an official journal of EFIS. Established in 1971, EJI continues to serve the needs of the global immunology community covering basic, translational and clinical research, ranging from adaptive and innate immunity through to vaccines and immunotherapy, cancer, autoimmunity, allergy and more. Mechanistic insights and thought-provoking immunological findings are of interest, as are studies using the latest omics technologies. We offer fast track review for competitive situations, including recently scooped papers, format free submission, transparent and fair peer review and more as detailed in our policies.
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