首页> 外文期刊>The Journal of biological chemistry >Sox Factors Transcriptionally Regulate ROBO4 Gene Expression in Developing Vasculature in Zebrafish
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Sox Factors Transcriptionally Regulate ROBO4 Gene Expression in Developing Vasculature in Zebrafish

机译:SOX因子在斑马鱼中的脉管系统中转录调节ROBO4基因表达

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摘要

Despite their importance as members of the Roundabout (Robo) family in the control of axonal and vascular patterning, the transcriptional regulation of these genes is poorly understood. In this study, we show that members of the Sry-related high mobility box (Sox) transcription factor family as being transcriptional regulators of roundabout4 (robo4), a Robo gene family member that participates in sprouting angiogenesis in vivo, in zebrafish. Double whole mount in situ hybridization analysis in zebrafish embryos revealed co-localization of the vascular relevant Sox factors sox7 or sox18 mRNA with robo4 transcripts in developing intersomitic vessels. A 3-kb human ROBO4 promoter element was able to drive reporter expression in zebrafish to recapitulate the endogenous temporal intersomitic vessel expression pattern of robo4. EMSA analysis confirmed binding of Sox18 to a canonical Sox binding site (from ?1170 bp to ?1176 bp) in the ROBO4 promoter (3 kb), and mutation analysis indicated that this site was partially responsible for ROBO4 promoter activity in ECs. A combination of gain- and loss-of-function analysis identified Sox7 and Sox18 co-regulation of robo4 but not fli1a transcripts in zebrafish. Finally, Sox-mediated robo4 transcriptional regulation is conserved across evolution. These studies imply Sox-mediated transcriptional regulation of Robo4 in the developing embryonic vasculature.
机译:尽管它们在控制轴突和血管图案中的环形交叉口(Robo)家族的成员重视,但这些基因的转录调节很差。在这项研究中,我们表明,斯里相关的高迁移率(SOX)转录因子家族的成员作为环形字母4(ROBO4)的转录调节因子,一种ROBO基因家族成员,其中在斑马鱼中参与体内发芽血管生成。在斑马鱼胚胎中的原位杂交分析双重整体安装在发育中间血管中的ROBO 4转录物中揭示了血管相关SOX因子SOX7或SOX18 mRNA的共定位。 3 kB人的Robo4启动子元素能够在斑马鱼中促进报告表达,以概括Robo4的内源性颞型血管表达模式。 EMSA分析证实了SOX18在Robo4启动子(3kB)中的典型SOX结合位点(来自α1170bp至1176bp)的结合,并且突变分析表明,该部位对ECS的Robo4启动子活性部分地负责。函数和丧失损失分析的组合鉴定了SOX7和SOX18 ROBO4的共调节,但不是斑马鱼中的FLI1A转录物。最后,SOX介导的Robo4转录调节在进化中被保守。这些研究意味着Sox介导的ROBO4在发育中胚胎脉管系统中的转录调节。

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