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果蝇无眼基因座编码一种整个视觉系统发育所需的含同源结构域的蛋白质。

The Drosophila sine oculis locus encodes a homeodomain-containing protein required for the development of the entire visual system.

作者信息

Cheyette B N, Green P J, Martin K, Garren H, Hartenstein V, Zipursky S L

机构信息

Molecular Biology Institute, University of California, School of Medicine, Los Angeles 90024-1737.

出版信息

Neuron. 1994 May;12(5):977-96. doi: 10.1016/0896-6273(94)90308-5.

Abstract

The transformation of an unpatterned epithelium into a patterned one is a fundamental issue in morphogenesis. This transformation occurs in a dramatic fashion in the developing eye imaginal disc, the primordium of the Drosophila compound eye. Molecular and developmental analyses reveals that the sine oculis (so) locus encodes a homeodomain-containing protein that is expressed and required in the unpatterned epithelium prior to morphogenesis. In mutants, cells undergo apoptosis. These findings argue that so plays an essential role in controlling the initial events of pattern formation in the eye disc. So is also expressed and required for the development of the rest of the fly visual system, including the optic lobes (i.e., those regions of the brain that process visual information). So is expressed in the optic lobe primordium prior to its invagination from the embryonic ectoderm; in so mutants, the optic lobe primordium fails to invaginate.

摘要

无模式上皮向有模式上皮的转变是形态发生中的一个基本问题。这种转变在发育中的眼成虫盘(果蝇复眼的原基)中以一种显著的方式发生。分子和发育分析表明,无眼基因(so)位点编码一种含同源结构域的蛋白质,该蛋白质在形态发生之前在无模式上皮中表达且是必需的。在突变体中,细胞会发生凋亡。这些发现表明,so在控制眼盘模式形成的初始事件中起着至关重要的作用。So在果蝇视觉系统的其余部分(包括视叶,即大脑中处理视觉信息的区域)的发育中也有表达且是必需的。So在视叶原基从胚胎外胚层内陷之前就在其中表达;在so突变体中,视叶原基无法内陷。

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