Institute of Cellular and System Medicine, National Health Research Institutes, Zhunan, Taiwan, R.O.C.
Graduate Institute of Biomedical Sciences, China Medical University, Taiwan, R.O.C.
Stem Cells. 2020 Feb;38(2):301-314. doi: 10.1002/stem.3117. Epub 2019 Nov 26.
Adult hair follicles undergo repeated cycling of regression (catagen), resting (telogen), and growth (anagen), which is maintained by hair follicle stem cells (HFSCs). The mechanism underlying hair growth initiation and HFSC maintenance is not fully understood. Here, by epithelial deletion of Hes1, a major Notch downstream transcriptional repressor, we found that hair growth is retarded, but the hair cycle progresses normally. Hes1 is specifically upregulated in the lower bulge/HG during anagen initiation. Accordingly, loss of Hes1 results in delayed activation of the secondary hair germ (HG) and shortened anagen phase. This developmental delay causes reduced hair shaft length but not identity changes in follicular lineages. Remarkably, Hes1 ablation results in impaired hair regeneration upon repetitive depilation. Microarray gene profiling on HFSCs indicates that Hes1 modulates Shh responsiveness in anagen initiation. Using primary keratinocyte cultures, we demonstrated that Hes1 deletion negatively influences ciliogenesis and Smoothened ciliary accumulation upon Shh treatment. Furthermore, transient application of Smoothened agonist during repetitive depilation can rescue anagen initiation and HFSC self-renewal in Hes1-deficient hair follicles. We reveal a critical function of Hes1 in potentiating Shh signaling in anagen initiation, which allows sufficient signaling strength to expand the HG and replenish HFSCs to maintain the hair cycle homeostasis.
成年毛囊经历反复的退化(休止期)、静止(退行期)和生长(生长期)循环,这一过程由毛囊干细胞(HFSCs)维持。目前,毛发生长起始和 HFSC 维持的机制尚未完全阐明。在这里,通过上皮细胞中 Hes1 的缺失(Hes1 是 Notch 下游的主要转录抑制因子),我们发现毛发生长受阻,但毛囊周期正常进行。Hes1 在生长期起始时特异性地上调于毛囊隆突区/静止期下部(HG)。因此,Hes1 的缺失导致次级毛囊胚芽(HG)的激活延迟和生长期缩短。这种发育迟缓导致毛囊干细胞分化的毛发轴变短,但不改变毛囊谱系的特征。值得注意的是,Hes1 的缺失会导致毛发在反复剃除后再生受损。HFSCs 的微阵列基因谱分析表明,Hes1 调节 Shh 反应,从而启动生长期。通过原代角质形成细胞培养,我们证明 Hes1 缺失会对 Shh 处理时的纤毛发生和 Smoothened 纤毛积累产生负面影响。此外,在反复剃除期间短暂应用 Smoothened 激动剂,可以挽救 Hes1 缺失的毛囊中的生长期起始和 HFSC 自我更新。我们揭示了 Hes1 在增强生长期起始时 Shh 信号中的关键作用,该作用允许足够的信号强度来扩大 HG 并补充 HFSCs,以维持毛囊周期的平衡。