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Retinal Expression of the Drosophila eyes absent Gene Is Controlled by Several Cooperatively Acting Cis-regulatory Elements

机译:果蝇眼缺失基因的视网膜表达受几个协同作用的顺式调节元件控制。

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摘要

The eyes absent (eya) gene of the fruit fly, Drosophila melanogaster, is a member of an evolutionarily conserved gene regulatory network that controls eye formation in all seeing animals. The loss of eya leads to the complete elimination of the compound eye while forced expression of eya in non-retinal tissues is sufficient to induce ectopic eye formation. Within the developing retina eya is expressed in a dynamic pattern and is involved in tissue specification/determination, cell proliferation, apoptosis, and cell fate choice. In this report we explore the mechanisms by which eya expression is spatially and temporally governed in the developing eye. We demonstrate that multiple cis-regulatory elements function cooperatively to control eya transcription and that spacing between a pair of enhancer elements is important for maintaining correct gene expression. Lastly, we show that the loss of eya expression in sine oculis (so) mutants is the result of massive cell death and a progressive homeotic transformation of retinal progenitor cells into head epidermis.
机译:果蝇黑腹果蝇(Drosophila melanogaster)的眼睛缺失(eya)基因是进化上保守的基因调控网络的成员,该网络控制所有有眼动物的眼睛形成。 eya的丧失导致完全复眼的消除,而eya在非视网膜组织中的强制表达足以诱导异位眼的形成。在发育中的视网膜内,eya以动态模式表达,并参与组织规格/确定,细胞增殖,凋亡和细胞命运选择。在本报告中,我们探讨了在发育中的眼睛中时空表达受到支配的机制。我们证明了多个顺式调节元件协同作用以控制eya转录,一对增强子之间的间隔对于维持正确的基因表达很重要。最后,我们显示正弦骨(so)突变体中eya表达的丧失是大量细胞死亡和视网膜祖细胞向头部表皮逐渐进行顺势转化的结果。

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