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果蝇 bZIP 蛋白 Atf3 和 Jun 的相互作用阻止了变态期间上皮细胞的替换。

Interaction between Drosophila bZIP proteins Atf3 and Jun prevents replacement of epithelial cells during metamorphosis.

机构信息

Biology Center, Czech Academy of Sciences and Department of Molecular Biology, University of South Bohemia, Ceske Budejovice 37005, Czech Republic.

出版信息

Development. 2010 Jan;137(1):141-50. doi: 10.1242/dev.037861.

Abstract

Epithelial sheet spreading and fusion underlie important developmental processes. Well-characterized examples of such epithelial morphogenetic events have been provided by studies in Drosophila, and include embryonic dorsal closure, formation of the adult thorax and wound healing. All of these processes require the basic region-leucine zipper (bZIP) transcription factors Jun and Fos. Much less is known about morphogenesis of the fly abdomen, which involves replacement of larval epidermal cells (LECs) with adult histoblasts that divide, migrate and finally fuse to form the adult epidermis during metamorphosis. Here, we implicate Drosophila Activating transcription factor 3 (Atf3), the single ortholog of human ATF3 and JDP2 bZIP proteins, in abdominal morphogenesis. During the process of the epithelial cell replacement, transcription of the atf3 gene declines. When this downregulation is experimentally prevented, the affected LECs accumulate cell-adhesion proteins and their extrusion and replacement with histoblasts are blocked. The abnormally adhering LECs consequently obstruct the closure of the adult abdominal epithelium. This closure defect can be either mimicked and further enhanced by knockdown of the small GTPase Rho1 or, conversely, alleviated by stimulating ecdysone steroid hormone signaling. Both Rho and ecdysone pathways have been previously identified as effectors of the LEC replacement. To elicit the gain-of-function effect, Atf3 specifically requires its binding partner Jun. Our data thus identify Atf3 as a new functional partner of Drosophila Jun during development.

摘要

上皮细胞的铺展和融合是重要的发育过程的基础。果蝇研究提供了此类上皮形态发生事件的典型例子,包括胚胎背侧闭合、成虫胸部形成和伤口愈合。所有这些过程都需要基本区域亮氨酸拉链(bZIP)转录因子 Jun 和 Fos。然而,对于涉及幼虫表皮细胞(LEC)被成年成体表皮细胞取代的果蝇腹部形态发生过程,我们知之甚少,这些成体表皮细胞在变态过程中分裂、迁移,最终融合形成成虫表皮。在这里,我们将果蝇激活转录因子 3(Atf3),即人类 ATF3 和 JDP2 bZIP 蛋白的单一同源物,与腹部形态发生联系起来。在上皮细胞替代过程中,atf3 基因的转录下降。当这种下调被实验性地阻止时,受影响的 LEC 会积累细胞粘附蛋白,它们的挤出和被成体表皮细胞取代被阻止。异常粘附的 LEC 会因此阻碍成虫腹部表皮的闭合。这种闭合缺陷可以通过敲低小 GTPase Rho1 来模拟和进一步增强,或者通过刺激蜕皮激素类固醇激素信号来缓解。Rho 和蜕皮激素途径都已被先前鉴定为 LEC 替代的效应物。为了产生功能获得效应,Atf3 特异性需要其结合伴侣 Jun。因此,我们的数据确定 Atf3 是果蝇 Jun 在发育过程中的一个新的功能伙伴。

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