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Vps34 介导的脂质信号传导过程调节效应调节性 T 细胞的过渡异质性和功能适应性。

Vps34-orchestrated lipid signaling processes regulate the transitional heterogeneity and functional adaptation of effector regulatory T cells.

作者信息

Norton Erienne G, Chapman Nicole M, Shi Hao, Meng Xiaoxi, Huang Hongling, Kc Anil, Rankin Sherri, Saravia Jordy, Yuan Sujing, Hu Haoran, Vogel Peter, Chi Hongbo

机构信息

Department of Immunology, St. Jude Children's Research Hospital, Memphis, Tennessee, United States of America.

St. Jude Graduate School of Biomedical Sciences, St. Jude Children's Research Hospital, Memphis, Tennessee, United States of America.

出版信息

PLoS Biol. 2025 Apr 11;23(4):e3003074. doi: 10.1371/journal.pbio.3003074. eCollection 2025 Apr.

Abstract

Regulatory T cell (Treg) heterogeneity exists in lymphoid and non-lymphoid tissues, but we have limited understanding of context-dependent functions and spatiotemporal regulators of heterogenous Treg states, especially during perinatal life when immune tolerance is established. Here, we revealed that the class III PI3K Vps34 orchestrates effector Treg (eTreg) transitional heterogeneity during perinatal life. We found that loss of Vps34 reduced terminal eTreg accumulation in lymphoid tissues, associated with decreased Treg generation in non-lymphoid tissues and development of an early-onset autoimmune-like disease. After perinatal life, Vps34-deficient eTreg accumulation was further impaired due to reduced cell survival, highlighting temporal regulation of eTreg heterogeneity and maintenance by Vps34. Accordingly, inhibition of Vps34 in mature Tregs disrupted immune homeostasis but boosted anti-tumor immunity. Mechanistically, multiomics profiling approaches uncovered that Vps34-orchestrated transcriptional and epigenetic remodeling promotes terminal eTreg programming. Further, via genetic deletion of the Vps34-interacting proteins Atg14 or Uvrag in Tregs, we established that Atg14 but not Uvrag was required for the overall survival, but not terminal differentiation, of eTregs, suggesting that autophagy but not endocytosis partly contributed to Vps34-dependent effects. Accordingly, mice with Treg-specific loss of Atg14, but not Uvrag, had moderately disrupted immune homeostasis and reduced tumor growth, with Vps34- or Atg14-dependent gene signatures also being elevated in intratumoral Tregs from human cancer patients. Collectively, our study reveals distinct Vps34-orchestrated signaling events that regulate eTreg heterogeneity and functional adaptation and the pathophysiological consequences on autoimmunity versus anti-tumor immunity.

摘要

调节性T细胞(Treg)的异质性存在于淋巴组织和非淋巴组织中,但我们对异质性Treg状态的上下文依赖性功能以及时空调节因子的了解有限,尤其是在建立免疫耐受的围产期。在这里,我们揭示了III类PI3K Vps34在围产期协调效应性Treg(eTreg)的过渡异质性。我们发现Vps34的缺失减少了淋巴组织中终末eTreg的积累,这与非淋巴组织中Treg生成的减少以及早发性自身免疫样疾病的发展有关。围产期过后,由于细胞存活率降低,Vps34缺陷的eTreg积累进一步受损,突出了Vps34对eTreg异质性和维持的时间调节。因此,在成熟Tregs中抑制Vps34会破坏免疫稳态,但会增强抗肿瘤免疫力。从机制上讲,多组学分析方法发现Vps34协调的转录和表观遗传重塑促进了终末eTreg的编程。此外,通过在Tregs中基因敲除与Vps34相互作用的蛋白Atg14或Uvrag,我们确定Atg14而非Uvrag是eTregs整体存活所必需的,但不是终末分化所必需的,这表明自噬而非内吞作用部分促成了Vps34依赖性效应。因此,Treg特异性缺失Atg14而非Uvrag的小鼠免疫稳态受到中度破坏,肿瘤生长减缓,来自人类癌症患者肿瘤内Tregs中Vps34或Atg14依赖性基因特征也升高。总的来说,我们的研究揭示了不同的Vps34协调的信号事件,这些事件调节eTreg异质性和功能适应性以及对自身免疫与抗肿瘤免疫的病理生理后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c20/11990774/c84bf566ec57/pbio.3003074.g001.jpg

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