Oliva Carlos, Molina-Fernandez Claudia, Maureira Miguel, Candia Noemi, López Estefanía, Hassan Bassem, Aerts Stein, Cánovas José, Olguín Patricio, Sierralta Jimena
Laboratorio de Neurobiología Celular y Molecular, Programa de Fisiología y Biofísica, Instituto de Ciencias Biomédicas, Facultad de Medicina, Universidad de Chile.
Biomedical Neurosciences Institute, ICM, Facultad de Medicina, Universidad de Chile.
Dev Neurobiol. 2015 Sep;75(9):1018-32. doi: 10.1002/dneu.22271. Epub 2015 Feb 18.
During axon targeting, a stereotyped pattern of connectivity is achieved by the integration of intrinsic genetic programs and the response to extrinsic long and short-range directional cues. How this coordination occurs is the subject of intense study. Transcription factors play a central role due to their ability to regulate the expression of multiple genes required to sense and respond to these cues during development. Here we show that the transcription factor HNT regulates layer-specific photoreceptor axon targeting in Drosophila through transcriptional control of jbug/Filamin and multiple genes involved in axon guidance and cytoskeleton organization.Using a microarray analysis we identified 235 genes whose expression levels were changed by HNT overexpression in the eye primordia. We analyzed nine candidate genes involved in cytoskeleton regulation and axon guidance, six of which displayed significantly altered gene expression levels in hnt mutant retinas. Functional analysis confirmed the role of OTK/PTK7 in photoreceptor axon targeting and uncovered Tiggrin, an integrin ligand, and Jbug/Filamin, a conserved actin- binding protein, as new factors that participate of photoreceptor axon targeting. Moreover, we provided in silico and molecular evidence that supports jbug/Filamin as a direct transcriptional target of HNT and that HNT acts partially through Jbug/Filamin in vivo to regulate axon guidance. Our work broadens the understanding of how HNT regulates the coordinated expression of a group of genes to achieve the correct connectivity pattern in the Drosophila visual system. © 2015 Wiley Periodicals, Inc. Develop Neurobiol 75: 1018-1032, 2015.
在轴突靶向过程中,通过整合内在遗传程序以及对外部长程和短程方向线索的反应,实现了一种刻板的连接模式。这种协调是如何发生的是深入研究的主题。转录因子发挥着核心作用,因为它们能够调控发育过程中感知和响应这些线索所需的多个基因的表达。在这里,我们表明转录因子HNT通过对jbug/细丝蛋白以及多个参与轴突导向和细胞骨架组织的基因进行转录控制,来调节果蝇中特定层的光感受器轴突靶向。通过微阵列分析,我们鉴定出235个基因,其在眼原基中因HNT过表达而改变了表达水平。我们分析了九个参与细胞骨架调节和轴突导向的候选基因,其中六个在hnt突变视网膜中显示出显著改变的基因表达水平。功能分析证实了OTK/PTK7在光感受器轴突靶向中的作用,并发现整合素配体Tiggrin和保守的肌动蛋白结合蛋白Jbug/细丝蛋白是参与光感受器轴突靶向的新因子。此外,我们提供了计算机模拟和分子证据,支持jbug/细丝蛋白是HNT的直接转录靶点,并且HNT在体内部分通过Jbug/细丝蛋白来调节轴突导向。我们的工作拓宽了对HNT如何调节一组基因的协调表达以在果蝇视觉系统中实现正确连接模式的理解。© 2015威利期刊公司。《发育神经生物学》75: 1018 - 1032, 2015。