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ETV3 和 ETV6 通过抑制巨噬细胞命运决定来促进单核细胞向树突状细胞分化。

ETV3 and ETV6 enable monocyte differentiation into dendritic cells by repressing macrophage fate commitment.

机构信息

Institut Curie, PSL Research University, INSERM, U932,, Paris, France.

Department of Pathology, New York University Grossman School of Medicine, New York, NY, USA.

出版信息

Nat Immunol. 2023 Jan;24(1):84-95. doi: 10.1038/s41590-022-01374-0. Epub 2022 Dec 21.

Abstract

In inflamed tissues, monocytes differentiate into macrophages (mo-Macs) or dendritic cells (mo-DCs). In chronic nonresolving inflammation, mo-DCs are major drivers of pathogenic events. Manipulating monocyte differentiation would therefore be an attractive therapeutic strategy. However, how the balance of mo-DC versus mo-Mac fate commitment is regulated is not clear. In the present study, we show that the transcriptional repressors ETV3 and ETV6 control human monocyte differentiation into mo-DCs. ETV3 and ETV6 inhibit interferon (IFN)-stimulated genes; however, their action on monocyte differentiation is independent of IFN signaling. Instead, we find that ETV3 and ETV6 directly repress mo-Mac development by controlling MAFB expression. Mice deficient for Etv6 in monocytes have spontaneous expression of IFN-stimulated genes, confirming that Etv6 regulates IFN responses in vivo. Furthermore, these mice have impaired mo-DC differentiation during inflammation and reduced pathology in an experimental autoimmune encephalomyelitis model. These findings provide information about the molecular control of monocyte fate decision and identify ETV6 as a therapeutic target to redirect monocyte differentiation in inflammatory disorders.

摘要

在炎症组织中,单核细胞分化为巨噬细胞(mo-Macs)或树突状细胞(mo-DCs)。在慢性非解决炎症中,mo-DCs 是致病事件的主要驱动因素。因此,操纵单核细胞分化将是一种有吸引力的治疗策略。然而,mo-DC 与 mo-Mac 命运决定的平衡如何调节尚不清楚。在本研究中,我们表明转录抑制因子 ETV3 和 ETV6 控制人类单核细胞分化为 mo-DCs。ETV3 和 ETV6 抑制干扰素(IFN)刺激基因;然而,它们对单核细胞分化的作用独立于 IFN 信号。相反,我们发现 ETV3 和 ETV6 通过控制 MAFB 表达直接抑制 mo-Mac 的发育。单核细胞中 Etv6 缺失的小鼠自发表达 IFN 刺激基因,证实 Etv6 在体内调节 IFN 反应。此外,这些小鼠在炎症期间 mo-DC 分化受损,在实验性自身免疫性脑脊髓炎模型中病理减轻。这些发现提供了关于单核细胞命运决定的分子控制的信息,并确定 ETV6 是一种治疗靶点,可在炎症性疾病中重新定向单核细胞分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fc8/9810530/c52acdc85836/41590_2022_1374_Fig1_HTML.jpg

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