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The atypical mitogen-activated protein kinase ERK3 is essential for establishment of epithelial architecture

机译:非典型的有丝分裂原激活的蛋白激酶ERK3对于上皮结构的建立至关重要

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摘要

Epithelia contribute to physical barriers that protect internal tissues from the external environment and also support organ structure. Accordingly, establishment and maintenance of epithelial architecture are essential for both embryonic development and adult physiology. Here, using gene knockout and knockdown techniques along with gene profiling, we show that extracellular signal–regulated kinase 3 (ERK3), a poorly characterized atypical mitogen-activated protein kinase (MAPK), regulates the epithelial architecture in vertebrates. We found that in Xenopus embryonic epidermal epithelia, ERK3 knockdown impairs adherens and tight-junction protein distribution, as well as tight-junction barrier function, resulting in epidermal breakdown. Moreover, in human epithelial breast cancer cells, inhibition of ERK3 expression induced thickened epithelia with aberrant adherens and tight junctions. Results from microarray analyses suggested that transcription factor AP-2α (TFAP2A), a transcriptional regulator important for epithelial gene expression, is involved in ERK3-dependent changes in gene expression. Of note, TFAP2A knockdown phenocopied ERK3 knockdown in both Xenopus embryos and human cells, and ERK3 was required for full activation of TFAP2A-dependent transcription. Our findings reveal that ERK3 regulates epithelial architecture, possibly together with TFAP2A.
机译:上皮细胞有助于物理屏障,保护内部组织免受外部环境影响,并支持器官结构。因此,上皮结构的建立和维持对于胚胎发育和成年生理都是必不可少的。在这里,我们使用基因敲除和基因敲除技术以及基因谱分析,表明细胞外信号调节激酶3(ERK3)是特征性很差的非典型有丝分裂原活化蛋白激酶(MAPK),可调节脊椎动物的上皮结构。我们发现在非洲爪蟾胚胎表皮上皮细胞中,ERK3敲低削弱了粘附和紧密连接蛋白的分布,以及紧密连接的屏障功能,导致表皮破坏。此外,在人上皮乳腺癌细胞中,ERK3表达的抑制诱导了上皮增厚,并带有异常的粘附和紧密连接。微阵列分析的结果表明,转录因子AP-2α(TFAP2A)是一种对上皮基因表达重要的转录调节因子,参与了ERK3依赖性基因表达的变化。值得注意的是,非洲爪蟾胚胎和人类细胞中的TFAP2A敲除表型化了ERK3敲除,而ERK3是完全激活TFAP2A依赖性转录所必需的。我们的发现表明ERK3可能与TFAP2A一起调节上皮结构。

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