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The loss of ATP2C1 impairs the DNA damage response and induces altered skin homeostasis: Consequences for epidermal biology in Hailey-Hailey disease

机译:ATP2C1的缺失会损害DNA损伤反应并引起皮肤稳态改变:Hailey-Hailey病的表皮生物学后果

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Mutation of the Golgi Ca(2+)-ATPase ATP2C1 is associated with deregulated calcium homeostasis and altered skin function. ATP2C1 mutations have been identified as having a causative role in Hailey-Hailey disease, an autosomal-dominant skin disorder. Here, we identified ATP2C1 as a crucial regulator of epidermal homeostasis through the regulation of oxidative stress. Upon ATP2C1 inactivation, oxidative stress and Notch1 activation were increased in cultured human keratinocytes. Using RNA-seq experiments, we found that the DNA damage response (DDR) was consistently down-regulated in keratinocytes derived from the lesions of patients with Hailey-Hailey disease. Although oxidative stress activates the DDR, ATP2C1 inactivation down-regulates DDR gene expression. We showed that the DDR response was a major target of oxidative stress-induced Notch1 activation. Here, we show that this activation is functionally important because early Notch1 activation in keratinocytes induces keratinocyte differentiation and represses the DDR. These results indicate that an ATP2C1/NOTCH1 axis might be critical for keratinocyte function and cutaneous homeostasis, suggesting a plausible model for the pathological features of Hailey-Hailey disease.
机译:高尔基族Ca(2 +)-ATPase ATP2C1的突变与失调的钙稳态和皮肤功能改变有关。 ATP2C1突变已被确定为常染色体显性皮肤疾病Hailey-Hailey病的病因。在这里,我们确定了ATP2C1通过调节氧化应激成为表皮稳态的关键调节剂。 ATP2C1失活后,培养的人角质形成细胞中的氧化应激和Notch1激活增加。使用RNA序列实验,我们发现DNA损伤反应(DDR)在源自Hailey-Hailey病患者病变的角质形成细胞中始终被下调。尽管氧化应激会激活DDR,但ATP2C1失活会下调DDR基因表达。我们表明,DDR反应是氧化应激诱导的Notch1激活的主要目标。在这里,我们显示此激活在功能上很重要,因为早期Notch1在角质形成细胞中的激活会诱导角质形成细胞分化并抑制DDR。这些结果表明,ATP2C1 / NOTCH1轴可能对角质形成细胞功能和皮肤动态平衡至关重要,这为Hailey-Hailey病的病理特征提供了可能的模型。

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