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果蝇眼睛发育过程中视网膜决定网络中的远端触角及与远端触角相关的功能。

distal antenna and distal antenna-related function in the retinal determination network during eye development in Drosophila.

作者信息

Curtiss Jennifer, Burnett Micheal, Mlodzik Marek

机构信息

Mount Sinai School of Medicine, Brookdale Department of Molecular, Cell and Developmental Biology, One Gustave L. Levy Place, New York, NY 10029, USA.

出版信息

Dev Biol. 2007 Jun 15;306(2):685-702. doi: 10.1016/j.ydbio.2007.04.006. Epub 2007 Apr 12.

Abstract

Drosophila eye specification occurs through the activity of the retinal determination (RD) network, which includes the Eyeless (Ey), Eyes absent (Eya), Sine oculis (So) and Dachshund (Dac) transcription factors. Based on their abilities to transform antennal precursors towards an eye fate, the distal antenna (dan) and distal antenna-related (danr) genes encode two new RD factors. Dan and Danr are probable transcription factors localized in nuclei of eye precursors and differentiating eye tissue. Loss-of-function single and double dan/danr mutants have small, rough eyes, indicating a requirement for wild-type eye development. In addition, dan and danr participate in the transcriptional hierarchy that controls expression of RD genes, and Dan and Danr interact physically and genetically with Ey and Dac. Eye specification culminates in differentiation of ommatidia through the activities of the proneural gene atonal (ato) in the founding R8 photoreceptor and Egfr signaling in additional photoreceptors. Danr expression overlaps with Ato during R8 specification, and Dan and Danr regulate Ato expression and are required for normal R8 induction and differentiation. These data demonstrate a role for Dan and Danr in eye development and provide a link between eye specification and differentiation.

摘要

果蝇的眼发育通过视网膜决定(RD)网络的活动来实现,该网络包括无眼(Ey)、眼缺失(Eya)、眼正弦(So)和腊肠犬(Dac)转录因子。基于其将触角前体转变为眼命运的能力,远端触角(dan)和远端触角相关(danr)基因编码两个新的RD因子。Dan和Danr可能是定位在眼前体细胞核和正在分化的眼组织中的转录因子。功能缺失的单dan/danr突变体和双dan/danr突变体具有小而粗糙的眼睛,表明野生型眼发育需要它们。此外,dan和danr参与控制RD基因表达的转录层级,并且Dan和Danr与Ey和Dac在物理和遗传上相互作用。眼发育最终通过起始R8光感受器中神经前体基因无调性(ato)的活动以及其他光感受器中的表皮生长因子受体(Egfr)信号传导,实现小眼的分化。在R8特化过程中,Danr表达与Ato重叠,并且Dan和Danr调节Ato表达,是正常R8诱导和分化所必需的。这些数据证明了Dan和Danr在眼发育中的作用,并提供了眼发育和分化之间的联系。

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