Gu Li-Hong, Coulombe Pierre A
Department of Biological Chemistry, Johns Hopkins University School of Medicine, 725 N. Wolfe St., Baltimore, MD 21205, USA.
Am J Pathol. 2008 Sep;173(3):752-61. doi: 10.2353/ajpath.2008.071089. Epub 2008 Aug 7.
Keratins 6a and b (K6a, K6b) belong to a subset of keratin genes with constitutive expression in epithelial appendages, and inducible expression in additional epithelia, when subjected to environmental challenges or disease. Mutations in K6a or K6b cause a broad spectrum of epithelial lesions that differentially affect nail, hair, and glands in humans. Some lesions reflect a loss of the structural support function shared by K6, other keratins, and intermediate filament proteins. The formation of sebaceous gland-derived epithelial cysts does not fit this paradigm, raising the question of the unique functions of different K6 isoforms in this setting. Here, we exploit a mouse model of constitutively expressed Gli2, a Hedgehog (Hh) signal effector, to show that K6a expression correlates with duct fate in sebaceous glands (SGs). Whether in the setting of Gli2 transgenic mice skin, which develops a prominent SG duct and additional pairs of highly branched SGs, or in wild-type mouse skin, K6a expression consistently coincides with Hh signaling in ductal tissue. Gli2 expression modestly transactivates a K6a promoter-driven reporter in heterologous systems. Our findings thus identify K6 as a marker of duct fate in SGs, partly in response to Hh signaling, with implications for the pathological expansion of SGs that arises in the context of certain keratin-based diseases and related disorders.
角蛋白6a和b(K6a、K6b)属于角蛋白基因的一个子集,在表皮附属器中组成性表达,在受到环境挑战或疾病影响时,在其他上皮组织中可诱导表达。K6a或K6b的突变会导致一系列广泛的上皮病变,对人类的指甲、毛发和腺体产生不同的影响。一些病变反映了K6、其他角蛋白和中间丝蛋白共有的结构支撑功能的丧失。皮脂腺源性上皮囊肿的形成并不符合这一模式,这就引发了在这种情况下不同K6亚型独特功能的问题。在这里,我们利用一种组成性表达Gli2(一种Hedgehog(Hh)信号效应器)的小鼠模型,来表明K6a的表达与皮脂腺(SGs)中的导管命运相关。无论是在Gli2转基因小鼠皮肤(其形成了一个突出的SG导管和额外的高度分支的SG对)的情况下,还是在野生型小鼠皮肤中,K6a的表达始终与导管组织中的Hh信号一致。Gli2的表达在异源系统中适度激活K6a启动子驱动的报告基因。因此,我们的研究结果确定K6是SGs中导管命运的标志物,部分是对Hh信号的响应,这对某些基于角蛋白的疾病和相关病症中出现的SGs的病理扩张具有启示意义。