Institute of Molecular Health Sciences, Swiss Federal Institute of Technology, Zurich, Switzerland.
Institute of Immunobiology, Cantonal Hospital, St. Gallen, Switzerland.
J Exp Med. 2021 May 3;218(5). doi: 10.1084/jem.20191314.
Tissue-resident macrophages play a crucial role in maintaining homeostasis. Macrophage progenitors migrate to tissues perinatally, where environmental cues shape their identity and unique functions. Here, we show that the absence of PPARγ affects neonatal development and VCAM-1 expression of splenic iron-recycling red pulp macrophages (RPMs) and bone marrow erythroblastic island macrophages (EIMs). Transcriptome analysis of the few remaining Pparg-deficient RPM-like and EIM-like cells suggests that PPARγ is required for RPM and EIM identity, cell cycling, migration, and localization, but not function in mature RPMs. Notably, Spi-C, another transcription factor implicated in RPM development, was not essential for neonatal expansion of RPMs, even though the transcriptome of Spic-deficient RPMs was strongly affected and indicated a loss of identity. Similarities shared by Pparg- and Spic-deficient RPM-like cells allowed us to identify pathways that rely on both factors. PPARγ and Spi-C collaborate in inducing transcriptional changes, including VCAM-1 and integrin αD expression, which could be required for progenitor retention in the tissue, allowing access to niche-related signals that finalize differentiation.
组织驻留巨噬细胞在维持内稳态方面发挥着关键作用。巨噬细胞祖细胞在围产期迁移到组织中,环境线索决定其身份和独特功能。在这里,我们表明,PPARγ 的缺失会影响新生期脾脏铁循环红髓巨噬细胞(RPM)和骨髓成红细胞岛巨噬细胞(EIM)的 VCAM-1 表达和发育。少数剩余的 Pparg 缺陷型 RPM 样和 EIM 样细胞的转录组分析表明,PPARγ 是 RPM 和 EIM 身份、细胞周期、迁移和定位所必需的,但对成熟 RPM 中的功能不是必需的。值得注意的是,另一个涉及 RPM 发育的转录因子 Spi-C,即使 Spic 缺陷型 RPM 的转录组受到强烈影响并表明身份丧失,但其对于 RPM 的新生扩张也不是必需的。Pparg 和 Spic 缺陷型 RPM 样细胞之间的相似之处使我们能够确定依赖这两个因素的途径。PPARγ 和 Spi-C 协同诱导转录变化,包括 VCAM-1 和整合素 αD 的表达,这可能是祖细胞在组织中保留所必需的,允许获得与生态位相关的信号,从而完成分化。