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Keratinocyte Detachment-Differentiation Connection Revisited or Anoikis-Pityriasi Nexus Redux

机译:再次探讨角质形成细胞分离-分化连接或Anoikis-Pityriasi Nexus Redux

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摘要

Epidermis, a continuously self-renewing and differentiating organ, produces a protective stratum corneum that shields us from external chemical, physical and microbial threats. Epidermal differentiation is a multi-step process regulated by influences, some unknown, others insufficiently explored. Detachment of keratinocytes from the basement membrane is one such pro-differentiation stimulus. Here, we define the transcriptional changes during differentiation, especially those caused by detachment from the substratum. Using comprehensive transcriptional profiling, we revisited the effects of detachment as a differentiation signal to keratinocytes. We identified the genes regulated by detachment, the corresponding ontological categories and, using metaanalysis, compared the genes and categories to those regulated by other pro-differentiating stimuli. We identified 762 genes overexpressed in suspended keratinocyte, including known and novel differentiation markers, and 1427 in attached cells, including basal layer markers. Detachment induced epidermis development, cornification and desmosomal genes, but also innate immunity, proliferation inhibitors, transcription regulators and MAPKs; conversely the attached cells overexpressed cell cycle, anchoring, motility, splicing and mitochondrial genes, and both positive and negative regulators of apoptosis. Metaanalysis identified which detachment-regulated categories overlap with those induced by suprabasal location in vivo, by reaching confluency in vitro, and by inhibition of JUN kinases. Attached and in vivo basal cells shared overexpression of mitochondrial components. Interestingly, melanosome trafficking components were also overexpressed in the attached and in vivo basal keratinocytes. These results suggest that specific pro-differentiation signals induce specific features of the keratinization process, which are in vivo orchestrated into harmonious epidermal homeostasis.
机译:表皮是一个不断自我更新和分化的器官,它会产生保护性角质层,使我们免受外部化学,物理和微生物的威胁。表皮分化是受影响调节的多步骤过程,一些未知,而其他探索不足。角质形成细胞从基底膜上的分离是一种这样的促分化刺激。在这里,我们定义了分化过程中的转录变化,特别是那些与基底脱离相关的转录变化。使用全面的转录分析,我们重新讨论了分离的作用,作为对角质形成细胞的分化信号。我们鉴定了由分离调节的基因,相应的本体论类别,并使用荟萃分析将这些基因和类别与由其他促分化刺激调控的基因和类别进行了比较。我们确定了762个基因在悬浮的角质形成细胞中过表达,包括已知和新颖的分化标记,在附着细胞中包括基础层标记在内的1427个。分离引起表皮发育,角质化和桥粒基因,但也引起先天免疫,增殖抑制剂,转录调节剂和MAPKs;相反,贴壁细胞过表达细胞周期,锚定,运动,剪接和线粒体基因,以及凋亡的正负调节剂。荟萃分析确定了哪些脱离调控类别与体内超基底位置诱导的,在体外达到汇合度以及通过抑制JUN激酶而引起的重叠。附着的和体内的基底细胞共享线粒体成分的过表达。有趣的是,黑素体运输成分在附着的和体内的基础角质形成细胞中也过表达。这些结果表明,特定的前分化信号诱导了角化过程的特定特征,这些特征在体内被编排成和谐的表皮稳态。

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  • 年(卷),期 -1(9),6
  • 年度 -1
  • 页码 e100279
  • 总页数 12
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