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果蝇变态过程中泛素连接酶复合体对多巴脱羧酶基因表达的调控。

Control of Dopa decarboxylase gene expression by the Broad-Complex during metamorphosis in Drosophila.

作者信息

Chen Li, O'Keefe Sandra L, Hodgetts Ross B

机构信息

Department of Biological Sciences, University of Alberta, Edmonton, AB T6G 2E9, Canada.

出版信息

Mech Dev. 2002 Dec;119(2):145-56. doi: 10.1016/s0925-4773(02)00346-5.

Abstract

The induction of the Dopa decarboxylase gene (Ddc) in the epidermis of Drosophila at pupariation is a receptor-mediated response to the steroid molting hormone, ecdysone. Activity is also dependent on the Broad-Complex (BR-C), an early ecdysone response gene that functions during metamorphosis. BR-C encodes a family of zinc-finger protein isoforms, BR-C(Z1-Z4). Genetic experiments have shown that the Z2 isoform is required for epidermal Ddc to reach maximum expression at pupariation. In this paper, we report that BR-C regulates Ddc expression at two different developmental stages through two different cis-acting regions. At pupariation, BR-C acts synergistically with the ecdysone receptor to up-regulate Ddc. DNase I foot printing has identified four binding sites of the predominant Z2 isoform within a distal regulatory element that is required for maximal Ddc activity. The sites share a conserved core sequence with a set of BR-C sites that had been mapped previously to within the first Ddc intron. Using variously deleted Ddc genomic regions to drive reporter gene expression in transgenic organisms, we show that the intronic binding sites are required for Ddc expression at eclosion. At both pupariation and eclosion, BR-C releases Ddc from an active silencing mechanism, operating through two distinct cis-acting regions of the Ddc genomic domain at these stages. Transgenes, bearing a Ddc fragment from which one of the cis-acting silencers has been deleted, exhibit beta-galactosidase reporter activity in the epidermal cells prior to the appearance of endogenous DDC. Our finding that BR-C is required for Ddc activation at eclosion is the first evidence to suggest that this important regulator of the early metamorphic events, also regulates target gene expression at the end of metamorphosis.

摘要

在果蝇化蛹时,表皮中多巴脱羧酶基因(Ddc)的诱导是对类固醇蜕皮激素蜕皮酮的一种受体介导反应。其活性还依赖于泛素复合体(BR-C),这是一种在变态过程中起作用的早期蜕皮酮反应基因。BR-C编码一个锌指蛋白异构体家族,即BR-C(Z1-Z4)。遗传学实验表明,Z2异构体是表皮Ddc在化蛹时达到最大表达所必需的。在本文中,我们报道BR-C通过两个不同的顺式作用区域在两个不同的发育阶段调节Ddc表达。在化蛹时,BR-C与蜕皮酮受体协同作用以上调Ddc。DNase I足迹法已在一个远端调控元件内鉴定出主要的Z2异构体的四个结合位点,该元件是Ddc最大活性所必需的。这些位点与一组先前已定位到第一个Ddc内含子内的BR-C位点共享一个保守的核心序列。利用各种缺失的Ddc基因组区域驱动转基因生物中的报告基因表达,我们表明内含子结合位点是羽化时Ddc表达所必需的。在化蛹和羽化时,BR-C都通过Ddc基因组结构域在这些阶段的两个不同顺式作用区域,将Ddc从一种活性沉默机制中释放出来。携带一个顺式作用沉默子之一已被删除的Ddc片段的转基因,在内源性DDC出现之前就在表皮细胞中表现出β-半乳糖苷酶报告活性。我们发现BR-C是羽化时Ddc激活所必需的,这是第一个证据表明这个早期变态事件的重要调节因子,在变态结束时也调节靶基因表达。

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