Gao Qiuni, Zeng Shangyu, Chen Yupeng, Bao Ying, Cui Haiyan
Plastic Surgery Department of Tongji Hospital, Tongji University School of Medicine, Shanghai, 200065, PR China.
General Surgery Department of Tongji Hospital, Tongji University School of Medicine, Shanghai, 200065, PR China.
Biochem Biophys Res Commun. 2025 Jul 30;772:152035. doi: 10.1016/j.bbrc.2025.152035. Epub 2025 May 16.
Alopecia, a prevalent condition driven by abnormal hair follicle cycling and stem cell (HFSCs) dysregulation, underscores the need to elucidate molecular mechanisms governing HFSCs activation. While the nuclear factor of activated T cells c1 (NFATc1) is known to maintain HFSCs quiescence by suppressing cyclin-dependent kinase 4 (CDK4), the upstream regulators of this pathway remain unclear. Here, we identify MafB as a key modulator of HFSCs dynamics through NFATc1 signaling. Transcriptome sequencing of murine skin revealed elevated MafB expression during active hair regeneration. Adenoviral overexpression of MafB in depilated mice accelerated hair regrowth, increased hair follicle diameter, and enhanced HFSCs proliferation. Conversely, MafB knockdown suppressed regeneration and reduced the prolifiration ability of HFSCs. In vitro, MafB overexpression promoted HFSCs proliferation, migration, and differentiation, while mechanistic studies demonstrated MafB inhibits NFATc1 transcription, thereby relieving CDK4 repression and activating Wnt/β-catenin signaling. Rescue experiments confirmed NFATc1 restoration abrogated MafB-induced HFSCs activation. These findings establish MafB as a critical regulator of hair follicle cycling through the NFATc1/CDK4 axis, offering novel therapeutic avenues for alopecia.
脱发是一种由毛囊周期异常和干细胞(HFSCs)失调引起的常见病症,这凸显了阐明调控HFSCs激活的分子机制的必要性。虽然已知活化T细胞核因子c1(NFATc1)通过抑制细胞周期蛋白依赖性激酶4(CDK4)来维持HFSCs的静止状态,但该信号通路的上游调节因子仍不清楚。在这里,我们确定MafB是通过NFATc1信号传导调控HFSCs动态变化的关键调节因子。对小鼠皮肤进行转录组测序发现,在活跃的毛发再生过程中MafB表达升高。在脱毛小鼠中腺病毒介导的MafB过表达加速了毛发再生,增加了毛囊直径,并增强了HFSCs的增殖。相反,敲低MafB则抑制了再生,并降低了HFSCs的增殖能力。在体外,MafB过表达促进了HFSCs的增殖、迁移和分化,而机制研究表明MafB抑制NFATc1转录,从而解除对CDK4的抑制并激活Wnt/β-连环蛋白信号通路。拯救实验证实,恢复NFATc1可消除MafB诱导的HFSCs激活。这些发现确立了MafB是通过NFATc1/CDK4轴调控毛囊周期的关键调节因子,为脱发提供了新的治疗途径。