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同源异形盒和外生蛋白改变了果蝇视网膜背部边缘小眼的转录因子网络。

Homothorax and Extradenticle alter the transcription factor network in Drosophila ommatidia at the dorsal rim of the retina.

机构信息

Center for Developmental Genetics, Department of Biology, New York University, 100 Washington Place, New York, NY 10003, USA.

出版信息

Development. 2014 Feb;141(4):918-28. doi: 10.1242/dev.103127.

Abstract

A narrow band of ommatidia in the dorsal periphery of the Drosophila retina called the dorsal rim area (DRA) act as detectors for polarized light. The transcription factor Homothorax (Hth) is expressed in DRA inner photoreceptors R7 and R8 and is both necessary and sufficient to induce the DRA fate, including specialized morphology and unique Rhodopsin expression. Hth expression is the result of Wingless (Wg) pathway activity at the eye margins and restriction to the dorsal eye by the selector genes of the Iroquois complex (Iro-C). However, how the DRA is limited to exactly one or two ommatidial rows is not known. Although several factors regulating the Drosophila retinal mosaic are expressed in DRA ommatidia, the role of Hth in this transcriptional network is uncharacterized. Here we show that Hth functions together with its co-factor Extradenticle (Exd) to repress the R8-specific factor Senseless (Sens) in DRA R8 cells, allowing expression of an ultraviolet-sensitive R7 Rhodopsin (Rh3). Furthermore, Hth/Exd act in concert with the transcriptional activators Orthodenticle (Otd) and Spalt (Sal), to activate expression of Rh3 in the DRA. The resulting monochromatic coupling of Rh3 between R7 and R8 in DRA ommatidia is important for comparing celestial e-vector orientation rather than wavelengths. Finally, we show that Hth expression expands to many ommatidial rows in regulatory mutants of optomotorblind (omb), a transcription factor transducing Wg signaling at the dorsal and ventral eye poles. Therefore, locally restricted recruitment of the DRA-specific factor Hth alters the transcriptional network that regulates Rhodopsin expression across ommatidia.

摘要

果蝇视网膜背部边缘的一小段称为背部边缘区(DRA)的小眼结构,作为偏振光的探测器。转录因子同源异形盒(Hth)在 DRA 内光感受器 R7 和 R8 中表达,对于诱导 DRA 命运是必需和充分的,包括特化的形态和独特的视蛋白表达。Hth 表达是 Wingless(Wg)途径在眼缘处的活性以及选择基因 Iroquois 复合物(Iro-C)对眼睛背部的限制的结果。然而,DRA 如何精确地限制在一个或两个小眼列中尚不清楚。尽管有几个调节果蝇视网膜镶嵌的因子在 DRA 小眼结构中表达,但 Hth 在这个转录网络中的作用尚未确定。在这里,我们表明 Hth 与其共因子 Extradenticle(Exd)一起,在 DRA R8 细胞中抑制 R8 特异性因子 Senseless(Sens),从而允许表达对紫外线敏感的 R7 视蛋白(Rh3)。此外,Hth/Exd 与转录激活因子 Orthodenticle(Otd)和 Spalt(Sal)协同作用,激活 DRA 中 Rh3 的表达。DRA 小眼结构中 R7 和 R8 之间 Rh3 的单色谱耦合对于比较天体 e-矢量方向而不是波长很重要。最后,我们表明 Hth 表达在视黄醇结合蛋白(omb)的调控突变体中扩展到许多小眼列,视黄醇结合蛋白是一种在眼睛背部和腹部极处传递 Wg 信号的转录因子。因此,DRA 特异性因子 Hth 的局部募集改变了调节整个小眼结构中视蛋白表达的转录网络。

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