Chen Jing, Liu Tian-Tian, Ou Feiya, Ohara Ray A, Jo Suin, Postoak Joshua Luke, Egawa Takeshi, Day Ryan B, Murphy Theresa L, Murphy Kenneth M, Kim Sunkyung
Department of Pathology and Immunology, Washington University in St. Louis School of Medicine, St. Louis, MO, USA.
Section of Stem Cell Biology, Division of Oncology, Department of Internal Medicine, Washington University School of Medicine, St. Louis, MO, USA.
Sci Immunol. 2025 May 16;10(107):eadt5899. doi: 10.1126/sciimmunol.adt5899.
Development of type 1 conventional dendritic cells (cDC1s) underlies the capacity to generate antiviral and antitumor immune responses. Here, we identify the basis for cDC1 development from its earliest progenitors, determining the hierarchy of several required transcription factors and uncovering a series of mandatory cis interactions between constituent enhancers within the superenhancer. We produced in vivo mutations of two C/EBPα binding sites that comprise the +56-kilobase (kb) enhancer that markedly reduced IRF8 expression in all myeloid progenitors and impaired cDC1 development. These sites did not bind RUNX1 or RUNX3, and C/EBPα expression was instead regulated by their action at the +37-kb enhancer, placing RUNX factors upstream of in regulating . Last, we demonstrate that cis interactions between the +56-kb enhancer and the previously reported +41- and +32-kb enhancers are mandatory in the sequential progression of these stage-specific constituent elements.
1型常规树突状细胞(cDC1s)的发育是产生抗病毒和抗肿瘤免疫反应能力的基础。在此,我们确定了cDC1从其最早的祖细胞发育的基础,确定了几种必需转录因子的层次结构,并揭示了超级增强子内组成增强子之间的一系列强制性顺式相互作用。我们在体内对两个C/EBPα结合位点进行了突变,这两个位点构成了+56千碱基(kb)的增强子,显著降低了所有髓系祖细胞中IRF8的表达,并损害了cDC1的发育。这些位点不结合RUNX1或RUNX3,相反,C/EBPα的表达受它们在+37-kb增强子处的作用调节,这使得RUNX因子在调节C/EBPα方面处于上游位置。最后,我们证明+56-kb增强子与先前报道的+41-和+32-kb增强子之间的顺式相互作用在这些阶段特异性组成元件的顺序进展中是必需的。