首页> 外文期刊>Development >Identification of functional sine oculis motifs in the autoregulatory element of its own gene, in the eyeless enhancer and in the signalling gene hedgehog.
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Identification of functional sine oculis motifs in the autoregulatory element of its own gene, in the eyeless enhancer and in the signalling gene hedgehog.

机译:在其自身基因的自动调节元件,无眼增强子和信号传导基因刺猬中鉴定功能性正弦球菌基序。

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In Drosophila, the sine oculis (so) gene is important for the development of the entire visual system, including Bolwig's organ, compound eyes and ocelli. Together with twin of eyeless, eyeless, eyes absent and dachshund, so belongs to a network of genes that by complex interactions initiate eye development. Although much is known about the genetic interactions of the genes belonging to this retinal determination network, only a few such regulatory interactions have been analysed down to the level of DNA-protein interactions. Previous work in our laboratory identified an eye/ocellus specific enhancer of the sine oculis gene that is directly regulated by eyeless and twin of eyeless. We further characterized this regulatory element and identified a minimal enhancer fragment of so that sets up an autoregulatory feedback loop crucial for proper ocelli development. By systematic analysis of the DNA-binding specificity of so we identified the most important nucleotides for this interaction. Using the emerging consensus sequence for SO-DNA binding we performed a genome-wide search and have thereby been able to identify eyeless as well as the signalling gene hedgehog as putative targets of so. Our results strengthen the general assumption that feedback loops among the genes of the retinal determination network are crucial for proper development of eyes and ocelli.
机译:在果蝇中,正弦骨(so)基因对于整个视觉系统(包括Bolwig的器官,复眼和ocelli)的发育非常重要。与双眼,无眼,无眼和腊肠的双胞胎一起,属于基因网络,通过复杂的相互作用启动了眼睛的发育。尽管人们对属于这个视网膜测定网络的基因的遗传相互作用了解很多,但是只有很少的这种调节相互作用被分析到DNA-蛋白质相互作用的水平。我们实验室先前的工作确定了正弦眼基因的眼/眼特异性增强子,该增强子直接由无眼和双眼控制。我们进一步表征了该调控元件,并鉴定了其的最小增强子片段,从而建立了对正常卵泡发育至关重要的自动调控反馈回路。通过对DNA结合特异性的系统分析,我们确定了这种相互作用最重要的核苷酸。使用新兴的共有序列进行SO-DNA结合,我们进行了全基因组搜索,从而能够将无眼以及信号传导基因刺猬鉴定为潜在的靶点。我们的研究结果加强了这样一个普遍的假设,即视网膜测定网络的基因之间的反馈回路对于眼睛和眼的正常发育至关重要。

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