TET3是致病性巨噬细胞常见的表观遗传免疫调节剂。

Beibei Liu,Yangyang Dai,Zixin Wang,Jiahui Song,Yushu Du,Haining Lv,Stefania Bellone,Yang-Hartwich Yang,Andrew Kennedy,Songying Zhang,Muthukumaran Venkatachalapathy,Yulia V Surovtseva,Penghua Wang,Gordon G Carmichael,Hugh S Taylor,Xuchen Zhang,Da Li,Yingqun Huang
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引用次数: 0

摘要

通过单细胞/单核rna测序(sc/snRNA-seq)数据分析、免疫组织化学和原代巨噬细胞研究的结合,我们已经确定了以TET3过表达(Toe-Macs)为特征的致病性巨噬细胞在三种与慢性炎症相关的主要人类疾病中:代谢功能障碍相关脂肪性肝炎(MASH)、非小细胞肺癌(NSCLC)和子宫内膜异位症。这些巨噬细胞是由存在于疾病微环境(DME)中的常见因子诱导的。至关重要的是,这些巨噬细胞普遍依赖于TET3过表达,这使得它们作为一个单一群体被选择性消除,而不考虑其他分子标记的异质性。在小鼠中,通过骨髓特异性敲除Tet3来消耗这些巨噬细胞可以显著减缓疾病进展,并且使用Tet3特异性小分子降解剂在药理学上概括了治疗效果。通过一种意想不到的作用模式,TET3在表观遗传学上调控了多个基因的表达,这些基因对炎症/免疫抑制二甲醚的产生和维持至关重要。我们认为,Toe-Macs是致病性巨噬细胞的一个统一特征,可用于治疗MASH、NSCLC、子宫内膜异位症和其他潜在的慢性炎症性疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TET3 is a common epigenetic immunomodulator of pathogenic macrophages.
Through a combination of single-cell/single-nucleus RNA-sequencing (sc/snRNA-seq) data analysis, immunohistochemistry, and primary macrophage studies, we have identified pathogenic macrophages characterized by TET3 overexpression (Toe-Macs) in three major human diseases associated with chronic inflammation: metabolic dysfunction-associated steatohepatitis (MASH), non-small cell lung cancer (NSCLC), and endometriosis. These macrophages are induced by common factors present in the disease microenvironment (DME). Crucially, the universal reliance on TET3 overexpression among these macrophages enables their selective elimination as a single population, irrespective of heterogeneity in other molecular markers. In mice, depleting these macrophages via myeloid-specific Tet3 knockout markedly mitigates disease progression and the therapeutic effects are recapitulated pharmacologically using a TET3-specific small molecule degrader. Through an unexpected mode of action, TET3 epigenetically regulates expression of multiple genes key to the generation and maintenance of an inflammatory/immunosuppressive DME. We propose that Toe-Macs are a unifying feature of pathogenic macrophages that could be therapeutically targeted to treat MASH, NSCLC, endometriosis, and potentially other chronic inflammatory diseases.
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