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对无眼基因的突变分析和表型拯救表明,完整的无眼蛋白对于果蝇正常的眼睛和大脑发育是必需的。

Mutational analysis of the eyeless gene and phenotypic rescue reveal that an intact Eyeless protein is necessary for normal eye and brain development in Drosophila.

作者信息

Clements Jason, Hens Korneel, Merugu Srinivas, Dichtl Beatriz, de Couet H Gert, Callaerts Patrick

机构信息

Laboratory of Developmental Genetics, VIB, and Center of Human Genetics, Katholieke Universiteit Leuven, Herestraat 49, Box 602, B-3000, Leuven, Belgium.

出版信息

Dev Biol. 2009 Oct 15;334(2):503-12. doi: 10.1016/j.ydbio.2009.08.003. Epub 2009 Aug 8.

Abstract

Pax6 genes encode evolutionarily highly conserved transcription factors that are required for eye and brain development. Despite the characterization of mutations in Pax6 homologs in a range of organisms, and despite functional studies, it remains unclear what the relative importance is of the various parts of the Pax6 protein. To address this, we have studied the Drosophila Pax6 homolog eyeless. Specifically, we have generated new eyeless alleles, each with single missense mutations in one of the four domains of the protein. We show that these alleles result in abnormal eye and brain development while maintaining the OK107 eyeless GAL4 activity from which they were derived. We performed in vivo functional rescue experiments by expressing in an eyeless-specific pattern Eyeless proteins in which either the paired domain, the homeodomain, or the C-terminal domain was deleted. Rescue of the eye and brain phenotypes was only observed when full-length Eyeless was expressed, while all deletion constructs failed to rescue. These data, along with the phenotypes observed in the four newly characterized eyeless alleles, demonstrate the requirement for an intact Eyeless protein for normal Drosophila eye and brain development. They also suggest that some endogenous functions may be obscured in ectopic expression experiments.

摘要

Pax6基因编码对眼睛和大脑发育至关重要的进化上高度保守的转录因子。尽管已对一系列生物体中Pax6同源物的突变进行了表征,并且也进行了功能研究,但Pax6蛋白各个部分的相对重要性仍不清楚。为了解决这个问题,我们研究了果蝇的Pax6同源物无眼基因(eyeless)。具体而言,我们产生了新的无眼基因等位基因,每个等位基因在该蛋白的四个结构域之一中都有单个错义突变。我们表明,这些等位基因会导致眼睛和大脑发育异常,同时保持它们所源自的OK107无眼基因GAL4活性。我们通过以无眼基因特异性模式表达缺失了配对结构域、同源结构域或C末端结构域的无眼蛋白来进行体内功能拯救实验。只有当全长无眼蛋白表达时才能观察到眼睛和大脑表型的拯救,而所有缺失构建体均未能实现拯救。这些数据,连同在四个新表征的无眼基因等位基因中观察到的表型,证明了正常果蝇眼睛和大脑发育需要完整的无眼蛋白。它们还表明,一些内源性功能可能在异位表达实验中被掩盖。

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