Howard Hughes Medical Institute, Robin Chemers Neustein Laboratory of Mammalian Cell Biology and Development, The Rockefeller University, New York, NY, USA.
Department of Life Sciences, Pohang University of Science and Technology, Pohang, Republic of Korea.
Nature. 2024 Sep;633(8029):407-416. doi: 10.1038/s41586-024-07855-6. Epub 2024 Aug 21.
Billions of cells are eliminated daily from our bodies. Although macrophages and dendritic cells are dedicated to migrating and engulfing dying cells and debris, many epithelial and mesenchymal tissue cells can digest nearby apoptotic corpses. How these non-motile, non-professional phagocytes sense and eliminate dying cells while maintaining their normal tissue functions is unclear. Here we explore the mechanisms that underlie their multifunctionality by exploiting the cyclical bouts of tissue regeneration and degeneration during hair cycling. We show that hair follicle stem cells transiently unleash phagocytosis at the correct time and place through local molecular triggers that depend on both lipids released by neighbouring apoptotic corpses and retinoids released by healthy counterparts. We trace the heart of this dual ligand requirement to RARγ-RXRα, whose activation enables tight regulation of apoptotic cell clearance genes and provides an effective, tunable mechanism to offset phagocytic duties against the primary stem cell function of preserving tissue integrity during homeostasis. Finally, we provide functional evidence that hair follicle stem cell-mediated phagocytosis is not simply redundant with professional phagocytes but rather has clear benefits to tissue fitness. Our findings have broad implications for other non-motile tissue stem or progenitor cells that encounter cell death in an immune-privileged niche.
我们的身体每天都会清除数十亿个细胞。尽管巨噬细胞和树突状细胞专门迁移并吞噬死亡细胞和碎片,但许多上皮细胞和间充质组织细胞可以消化附近的凋亡尸体。这些非运动性、非专业吞噬细胞如何在维持正常组织功能的同时感知和清除死亡细胞尚不清楚。在这里,我们通过利用毛发周期期间组织再生和退化的周期性发作来探索其多功能性的机制。我们表明,毛囊干细胞通过局部分子触发,在正确的时间和地点短暂释放吞噬作用,这些触发依赖于相邻凋亡尸体释放的脂质和健康对应物释放的视黄酸。我们追踪到这种双重配体要求的核心是 RARγ-RXRα,其激活使凋亡细胞清除基因的紧密调节成为可能,并提供了一种有效的、可调节的机制,以抵消吞噬作用对维持组织完整性的主要干细胞功能的影响,从而在体内平衡期间。最后,我们提供了功能证据表明,毛囊干细胞介导的吞噬作用不仅与专业吞噬细胞简单地冗余,而且对组织适应性具有明显的益处。我们的发现对其他在免疫特权部位遇到细胞死亡的非运动性组织干细胞或祖细胞具有广泛的意义。