Seiberg M, Marthinuss J, Stenn K S
Skin Biology Research Center, R.W. Johnson Pharmaceutical Research Institute, Raritan, NJ 08869-0602.
J Invest Dermatol. 1995 Jan;104(1):78-82. doi: 10.1111/1523-1747.ep12613555.
Programmed cell death is central to hair biology, as the hair follicle undergoes cycles of growth (anagen), regression (catagen), and rest (telogen). During catagen, the hair follicle shortens via a pathway of programmed cell death and apoptosis. The molecular mechanisms involved in this process have not been elucidated yet. Using reverse transcriptase-polymerase chain reaction, we examined in this study the expression in total skin, throughout one hair cycle, of a series of regulatory genes associated with apoptosis. We show that gene expression within skin is hair-cycle-dependent. Transforming growth factor-beta was expressed immediately before catagen; therefore, it might be involved in the early signaling of this process. Tumor necrosis factor-beta was expressed during catagen and might be involved in follicular apoptosis. Several proto-oncogenes and transcription factors have been described in the regulation of apoptosis in other systems. Here we show that the transcript levels of c-myc, c-myb, and c-jun changed immediately before or during early catagen and thus could be involved in the signaling or regulation of catagen. Levels of p53 remained constant throughout anagen and catagen, suggesting that p53 is not involved in the developmentally induced apoptosis of the hair follicle. The variable expression throughout the hair cycle of the genes described demonstrates the dynamic changes of the skin and underscores the importance of studying the complete hair cycle when characterizing any molecule in skin.
程序性细胞死亡是毛发生物学的核心,因为毛囊会经历生长(生长期)、退化(退行期)和休止(休止期)的循环。在退行期,毛囊通过程序性细胞死亡和凋亡途径缩短。这一过程中涉及的分子机制尚未阐明。在本研究中,我们使用逆转录聚合酶链反应,检测了一系列与凋亡相关的调控基因在整个皮肤中一个毛发周期内的表达情况。我们发现皮肤内的基因表达依赖于毛发周期。转化生长因子-β在退行期开始前立即表达,因此它可能参与了这一过程的早期信号传导。肿瘤坏死因子-β在退行期表达,可能参与毛囊凋亡。在其他系统中,已有几种原癌基因和转录因子参与凋亡调控的报道。在此我们发现,c-myc、c-myb和c-jun的转录水平在退行期开始前或早期立即发生变化,因此可能参与退行期的信号传导或调控。在整个生长期和退行期,p53水平保持恒定,这表明p53不参与毛囊发育诱导的凋亡过程。所描述基因在整个毛发周期中的可变表达表明了皮肤的动态变化,并强调了在表征皮肤中的任何分子时研究完整毛发周期的重要性。