Institut de Recherche Interdisciplinaire en Biologie Humaine et Moleculaire, Université Libre de Bruxelles, Brussels, Belgium.
Genes Dev. 2013 Jan 1;27(1):39-51. doi: 10.1101/gad.206573.112. Epub 2012 Dec 27.
The accurate maintenance of genomic integrity is essential for tissue homeostasis. Deregulation of this process leads to cancer and aging. BRCA1 is a critical mediator of this process. Here, we performed conditional deletion of Brca1 during epidermal development and found that BRCA1 is specifically required for hair follicle (HF) formation and for development of adult HF stem cells (SCs). Mice deficient for Brca1 in the epidermis are hairless and display a reduced number of HFs that degenerate progressively. Surprisingly, the interfollicular epidermis and the sebaceous glands remain unaffected by Brca1 deletion. Interestingly, HF matrix transient amplifying progenitors present increased DNA damage, p53 stabilization, and caspase-dependent apoptosis compared with the interfollicular and sebaceous progenitors, leading to hyperproliferation, apoptosis, and subsequent depletion of the prospective adult HF SCs. Concomitant deletion of p53 and Brca1 rescues the defect of HF morphogenesis and loss of HF SCs. During adult homeostasis, BRCA1 is dispensable for quiescent bulge SCs, but upon their activation during HF regeneration, Brca1 deletion causes apoptosis and depletion of Brca1-deficient bulge SCs. Our data reveal a major difference in the requirement of BRCA1 between different types of epidermal SCs and progenitors and during the different activation stages of adult HF SCs.
基因组完整性的精确维持对于组织稳态至关重要。该过程的失调会导致癌症和衰老。BRCA1 是该过程的关键介质。在这里,我们在表皮发育过程中对 Brca1 进行条件性缺失,发现 BRCA1 特异性地需要参与毛囊 (HF) 的形成和成年 HF 干细胞 (SCs) 的发育。表皮中 Brca1 缺失的小鼠无毛,HF 数量减少且逐渐退化。令人惊讶的是,BRCA1 缺失对表皮间和皮脂腺无影响。有趣的是,HF 基质短暂扩增祖细胞与表皮间和皮脂腺祖细胞相比,表现出更高的 DNA 损伤、p53 稳定和依赖半胱氨酸天冬氨酸蛋白酶的细胞凋亡,导致过度增殖、凋亡和随后的潜在成年 HF SC 耗竭。p53 和 Brca1 的同时缺失可挽救 HF 形态发生缺陷和 HF SC 丧失。在成年稳态中,BRCA1 对静止的毛囊隆突 SCs 是可有可无的,但在 HF 再生期间它们被激活时,Brca1 缺失会导致凋亡和 BRCA1 缺陷的隆突 SCs 耗竭。我们的数据揭示了 BRCA1 在不同类型的表皮 SCs 和祖细胞以及在不同的成年 HF SC 激活阶段之间的需求存在显著差异。