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同源异型框转录因子even-skipped调节netrin受体的表达,以控制果蝇中背侧运动轴突的投射。

The homeobox transcription factor even-skipped regulates netrin-receptor expression to control dorsal motor-axon projections in Drosophila.

作者信息

Labrador Juan Pablo, O'keefe David, Yoshikawa Shingo, McKinnon Randall D, Thomas John B, Bashaw Greg J

机构信息

Department of Neuroscience, University of Pennsylvania School of Medicine, 421 Curie Boulevard, Philadelphia, Pennsylvania 19104, USA.

出版信息

Curr Biol. 2005 Aug 9;15(15):1413-9. doi: 10.1016/j.cub.2005.06.058.

Abstract

Homeobox transcription-factor codes control motor-neuron subtype identity and dorsal versus ventral axon guidance in both vertebrate and invertebrate nervous systems; however, the specific axon guidance-receptors that are regulated by these transcription factors to control pathfinding are poorly defined. In Drosophila, the Even-skipped (Eve) transcription factor specifies dorsal motor-axon projection through the regulation of unidentified guidance molecules. The Netrins and their attractive and repulsive receptors DCC and Unc-5, respectively, define important conserved cue and receptor families that control growth-cone guidance. In Drosophila, the Netrins and frazzled (the fly homolog of DCC) contribute to motor-axon guidance. Here, using genetics and single-cell mRNA-expression analysis, we show that expression and requirement of different Netrin receptor combinations correlate with distinct dorsal and ventral motor-axon projections in Drosophila. Mis-expression of eve dorsalizes ventral axons in part through the upregulation of Unc-5, whereas loss of eve function in two dorsally projecting motor neurons results in aberrant axon projections and a failure to express Unc-5. Our results support a functional link between the expression of distinct Netrin receptor combinations and the transcriptional control of dorsal motor-axon guidance.

摘要

同源框转录因子编码在脊椎动物和无脊椎动物神经系统中控制运动神经元亚型的身份以及背侧与腹侧轴突导向;然而,这些转录因子调控以控制路径寻找的特定轴突导向受体却鲜为人知。在果蝇中,成对规则基因(Eve)转录因子通过调控未知的导向分子来指定背侧运动轴突投射。网蛋白及其分别具有吸引和排斥作用的受体DCC和Unc-5,定义了控制生长锥导向的重要保守信号和受体家族。在果蝇中,网蛋白和卷曲蛋白(DCC的果蝇同源物)对运动轴突导向有作用。在这里,我们利用遗传学和单细胞mRNA表达分析表明,不同网蛋白受体组合的表达和需求与果蝇中不同的背侧和腹侧运动轴突投射相关。Eve的错误表达部分通过上调Unc-5使腹侧轴突背化,而在两个向背侧投射的运动神经元中Eve功能缺失会导致轴突投射异常且无法表达Unc-5。我们的结果支持了不同网蛋白受体组合的表达与背侧运动轴突导向的转录控制之间的功能联系。

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