Guha Udayan, Mecklenburg Lars, Cowin Pamela, Kan Lixin, O'Guin W Michael, D'Vizio Dolores, Pestell Richard G, Paus Ralf, Kessler John A
Department of Neuroscience, Albert Einstein College of Medicine, Bronx, New York, USA.
Am J Pathol. 2004 Sep;165(3):729-40. doi: 10.1016/S0002-9440(10)63336-6.
Hair follicle morphogenesis and cycling were examined in transgenic mice that overexpress the bone morphogenetic protein (BMP) inhibitor Noggin under the control of the neuron-specific enolase promoter. The Noggin transgene was misexpressed in the proximal portion of the hair follicle, primarily the matrix cells, apart from the usual expression in neurons. Transgene expression appeared only after induction of both the primary (tylotrich) and secondary (nontylotrich) pelage hair follicles had already occurred, thus allowing examination of the role of BMP signaling in follicles that had been induced normally in the presence of BMPs. The overexpression of Noggin in these animals resulted in a dramatic loss of hair postnatally. There was an apparently normal, but shortened period of postnatal hair follicle morphogenesis, followed by premature initiation of hair follicle cycling via entry into the first catagen transformation. This resulted in a complete loss of hair shafts from the nontylotrich hair follicles in these mice while the tylotrich hair follicles were normal. The onset of anagen of the first postnatal hair follicle cycle was also accelerated in the transgenic mice. Our results show that BMP signaling is specifically required for proper proliferation and differentiation during late morphogenesis of nontylotrich hair follicles and that inhibition of this signaling pathway may be one of the triggers for the onset of catagen when the follicles are in anagen and the onset of anagen when the follicles are in telogen. Ectopic sebocyte differentiation was another hallmark of the phenotype of these transgenic mice suggesting that BMP signaling may be an important determinant of lineage selection by common progenitor cells in the skin. BMPs likely promote a hair follicle-type differentiation pathway of keratinocytes while suppressing the sebaceous differentiation pathway of skin epithelium.
在神经元特异性烯醇化酶启动子控制下过表达骨形态发生蛋白(BMP)抑制剂Noggin的转基因小鼠中,对毛囊形态发生和周期性变化进行了研究。除了在神经元中的正常表达外,Noggin转基因在毛囊近端部分(主要是基质细胞)中错误表达。转基因表达仅在初级(触须)和次级(非触须)被毛毛囊诱导发生后才出现,从而能够研究BMP信号在正常诱导的、存在BMP的毛囊中的作用。这些动物中Noggin的过表达导致出生后毛发大量脱落。出生后毛囊形态发生期看似正常,但时间缩短,随后通过进入第一次退行期转变过早启动毛囊周期性变化。这导致这些小鼠的非触须毛囊完全失去毛干,而触须毛囊正常。转基因小鼠出生后第一个毛囊周期的生长期起始也加速。我们的结果表明,BMP信号在非触须毛囊晚期形态发生过程中对正常增殖和分化是特异性必需的,并且抑制该信号通路可能是毛囊处于生长期时退行期起始以及毛囊处于休止期时生长期起始的触发因素之一。异位皮脂腺细胞分化是这些转基因小鼠表型的另一个标志,表明BMP信号可能是皮肤中共同祖细胞谱系选择的重要决定因素。BMP可能促进角质形成细胞的毛囊型分化途径,同时抑制皮肤上皮的皮脂腺分化途径。