Kandyba Eve, Kobielak Krzysztof
Eli and Edythe Broad CIRM Center for Regenerative Medicine and Stem Cell Research, University of Southern California, Los Angeles, California, USA; Department of Pathology, University of Southern California, Los Angeles, California, USA.
Stem Cells. 2014 Apr;32(4):886-901. doi: 10.1002/stem.1599.
The hair follicle (HF) is an exceptional mini-organ to study the mechanisms which regulate HF morphogenesis, cycling, hair follicle stem cell (hfSCs) homeostasis, and progeny differentiation. During morphogenesis, Wnt signaling is well-characterized in the initiation of HF patterning but less is known about which particular Wnt ligands are required and whether individual Wnt ligands act in an indispensable or redundant manner during postnatal hfSCs anagen onset and HF cycle progression. Previously, we described the function of the bone morphogenetic protein (BMP) signaling target gene WNT7a in intrinsic regulation of hfSCs homeostasis in vivo. Here, we investigated the role of Wnt7b, which was also intrinsically upregulated in hfSCs during physiological and precocious anagen after BMP inhibition in vivo. We demonstrated Wnt7b to be a direct target of canonical BMP signaling in hfSCs and using Wnt7b conditional gene targeting during HF morphogenesis revealed disrupted HF cycling including a shorter anagen, premature catagen onset with overall shorter hair production, and diminished HF differentiation marker expression. Additionally, we observed that postnatal ablation of Wnt7b resulted in delayed HF activation, affecting both the hair germ and bulge hfSCs but still maintaining a two-step sequence of HF stimulation. Interestingly, Wnt7b cKO hfSCs participated in reformation of the new HF bulge, but with slower self-renewal. These findings demonstrate the importance of intrinsic Wnt7b expression in hfSCs regulation and normal HF cycling and surprisingly reveal a nonredundant role for Wnt7b in the control of HF anagen length and catagen entry which was not compensated by other Wnt ligands.
毛囊(HF)是一个研究调节毛囊形态发生、周期、毛囊干细胞(hfSCs)稳态及子代分化机制的特殊微型器官。在形态发生过程中,Wnt信号通路在毛囊模式形成的起始阶段已得到充分表征,但对于在出生后hfSCs生长期起始和毛囊周期进展过程中,哪些特定的Wnt配体是必需的,以及单个Wnt配体是以不可或缺还是冗余的方式发挥作用,我们了解得较少。此前,我们描述了骨形态发生蛋白(BMP)信号通路靶基因WNT7a在体内对hfSCs稳态的内在调节功能。在此,我们研究了Wnt7b的作用,在体内BMP抑制后的生理和早熟生长期,Wnt7b在hfSCs中也会内在地上调。我们证明Wnt7b是hfSCs中经典BMP信号通路的直接靶标,并且在毛囊形态发生过程中使用Wnt7b条件性基因靶向技术发现毛囊周期被破坏,包括生长期缩短、过早进入退行期且整体毛发生长变短,以及毛囊分化标志物表达减少。此外,我们观察到出生后敲除Wnt7b会导致毛囊激活延迟,对毛芽和隆突hfSCs均有影响,但仍维持毛囊刺激的两步序列。有趣的是,Wnt7b条件性敲除的hfSCs参与了新毛囊隆突的重塑,但自我更新较慢。这些发现证明了hfSCs中内在Wnt7b表达在调节毛囊和正常毛囊周期中的重要性,并且令人惊讶地揭示了Wnt7b在控制毛囊生长期长度和进入退行期方面具有非冗余作用,且未被其他Wnt配体补偿。