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Grainy head 在细胞骨架和连接动态调节中的新作用在上皮修复过程中。

Novel role for Grainy head in the regulation of cytoskeletal and junctional dynamics during epithelial repair.

机构信息

CEDOC - Chronic Diseases Research Centre, NOVA Medical School, Universidade NOVA de Lisboa, 1169-056 Lisboa, Portugal.

CEDOC - Chronic Diseases Research Centre, NOVA Medical School, Universidade NOVA de Lisboa, 1169-056 Lisboa, Portugal

出版信息

J Cell Sci. 2018 Sep 3;131(17):jcs213595. doi: 10.1242/jcs.213595.

Abstract

Tissue repair is critical for the maintenance of epithelial integrity and permeability. Simple epithelial repair relies on a combination of collective cell movements and the action of a contractile actomyosin cable at the wound edge that together promote the fast and efficient closure of tissue discontinuities. The Grainy head family of transcription factors (Grh in flies; GRHL1-GRHL3 in mammals) are essential proteins that have been implicated both in the development and repair of epithelia. However, the genes and the molecular mechanisms that it controls remain poorly understood. Here, we show that Grh knockdown disrupts actomyosin dynamics upon injury of the pupa epithelial tissue. This leads to the formation of an ectopic actomyosin cable away from the wound edge and impaired wound closure. We also uncovered that E-Cadherin is downregulated in the Grh-depleted tissue around the wound, likely as a consequence of Dorsal (an NF-κB protein) misregulation, which also affects actomyosin cable formation. Our work highlights the importance of Grh as a stress response factor and its central role in the maintenance of epithelial characteristics necessary for tissue repair through regulating cytoskeleton and E-Cadherin dynamics.

摘要

组织修复对于维持上皮完整性和通透性至关重要。简单的上皮修复依赖于集体细胞运动的组合和伤口边缘处收缩性肌动球蛋白电缆的作用,它们共同促进组织不连续性的快速而有效的闭合。颗粒头转录因子家族(果蝇中的 Grh;哺乳动物中的 GRHL1-GRHL3)是必不可少的蛋白质,它们不仅参与上皮组织的发育和修复,还参与上皮组织的发育和修复。然而,它控制的基因和分子机制仍知之甚少。在这里,我们表明 Grh 敲低会破坏蛹上皮组织受伤时的肌动球蛋白动力学。这导致在远离伤口边缘的地方形成异位肌动球蛋白电缆,并损害伤口闭合。我们还发现,在伤口周围耗尽 Grh 的组织中,E-Cadherin 下调,这可能是 Dorsal(一种 NF-κB 蛋白)失调的结果,这也会影响肌动球蛋白电缆的形成。我们的工作强调了 Grh 作为应激反应因子的重要性及其通过调节细胞骨架和 E-Cadherin 动力学来维持组织修复所需的上皮特征的核心作用。

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