Bio-X-Renji Hospital Research Center, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, People's Republic of China.
Key Laboratory for the Genetics of Developmental and Neuropsychiatric Disorders (Ministry of Education), Bio-X Institutes, Shanghai Jiao Tong University, Shanghai, People's Republic of China.
Stem Cells. 2022 Sep 26;40(9):843-856. doi: 10.1093/stmcls/sxac045.
Quiescent hair follicle stem cells (HFSCs) reside in specialized bulge niche where they undergo activation and differentiation upon sensing niche-dependent signals during hair follicle (HF) homeostasis and wound repair. The underlying mechanism of HFSCs and bulge niche maintenance is poorly understood. Our previous study has reported that a transcription factor, forkhead box P1 (Foxp1), functions to maintain the quiescence of HFSCs. Here, we further discovered that forkhead box P4 (Foxp4), a close family member of Foxp1, had similar expression profiles in various components of HFs and formed a complex with Foxp1 in vitro and in vivo. The HF-specific deficiency of Foxp4 resulted in the precocious activation of HFSCs during hair cycles. In contrast to single Foxp1 or Foxp4 conditional knockout (cKO) mice, Foxp1/4 double cKO exerted an additive effect in the spectrum and severity of phenotypes in HFSC activation, hair cycling acceleration and hair loss, coupled with remarkable downregulation of fibroblast growth factor 18 (Fgf18) and bone morphogenetic protein 6 (Bmp6) expression in bulge cells. In addition, the double KO of Foxp1/4 induced the apoptosis of K6-positive (K6+) inner bulge cells, a well-established stem cell (SC) niche, thus resulting in the destruction of the bulge SC niche and recurrent hair loss. Our investigation reveals the synergistic role of Foxp1/4 in sustaining K6+ niche cells for the quiescence of HFSCs.
静止期毛囊干细胞 (HFSCs) 存在于特定的隆起龛位中,在毛囊 (HF) 稳态和伤口修复过程中,它们通过感知龛位依赖的信号而被激活和分化。HFSCs 和隆起龛位维持的潜在机制尚未完全了解。我们之前的研究报告称,转录因子叉头框 P1 (Foxp1) 能够维持 HFSCs 的静止状态。在这里,我们进一步发现叉头框 P4 (Foxp4),Foxp1 的近亲家族成员,在 HF 的各个组成部分中有相似的表达谱,并在体外和体内与 Foxp1 形成复合物。HF 特异性 Foxp4 缺失导致 HFSCs 在毛发周期中过早激活。与单个 Foxp1 或 Foxp4 条件性敲除 (cKO) 小鼠相比,Foxp1/4 双 cKO 在 HFSC 激活、毛发周期加速和脱发的表型谱和严重程度方面表现出相加效应,同时隆起细胞中成纤维细胞生长因子 18 (Fgf18) 和骨形态发生蛋白 6 (Bmp6) 的表达显著下调。此外,Foxp1/4 的双 KO 诱导 K6 阳性 (K6+) 内隆起细胞的凋亡,这是一个成熟的干细胞 (SC) 龛位,从而导致隆起 SC 龛位的破坏和反复脱发。我们的研究揭示了 Foxp1/4 在维持 K6+ 龛位细胞静止的 HFSCs 中的协同作用。