首页> 美国卫生研究院文献>Molecules and Cells >Mutant-Specific Gene Expression Profiling Identifies SRY-Related HMG Box 11b (SOX11b) as a Novel Regulator of Vascular Development in Zebrafish
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Mutant-Specific Gene Expression Profiling Identifies SRY-Related HMG Box 11b (SOX11b) as a Novel Regulator of Vascular Development in Zebrafish

机译:特定于突变体的基因表达谱将SRY相关的HMG盒11b(SOX11b)鉴定为斑马鱼中血管发育的新型调节剂。

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摘要

Previous studies have identified two zebrafish mutants, cloche and groom of cloche, which lack the majority of the endothelial lineage at early developmental stages. However, at later stages, these avascular mutant embryos generate rudimentary vessels, indicating that they retain the ability to generate endothelial cells despite this initial lack of endothelial progenitors. To further investigate molecular mechanisms that allow the emergence of the endothelial lineage in these avascular mutant embryos, we analyzed the gene expression profile using microarray analysis on isolated endothelial cells. We find that the expression of the genes characteristic of the mesodermal lineages are substantially elevated in the kdrl+ cells isolated from avascular mutant embryos. Subsequent validation and analyses of the microarray data identifies Sox11b, a zebrafish ortholog of SRY-related HMG box 11 (SOX11), which have not previously implicated in vascular development. We further define the function sox11b during vascular development, and find that Sox11b function is essential for developmental angiogenesis in zebrafish embryos, specifically regulating sprouting angiogenesis. Taken together, our analyses illustrate a complex regulation of endothelial specification and differentiation during vertebrate development.
机译:先前的研究已经确定了两个斑马鱼突变体,克洛什和克洛什新郎,它们在早期发育阶段缺少大多数内皮细胞谱系。然而,在后期,这些无血管的突变体胚胎会产生基本的血管,表明尽管最初缺乏内皮祖细胞,但它们仍保留了产生内皮细胞的能力。为了进一步研究允许在这些无血管突变的胚胎中出现内皮谱系的分子机制,我们使用微阵列分析对分离的内皮细胞分析了基因表达谱。我们发现,从无血管突变体胚胎中分离出的kdrl + 细胞中,中胚层谱系特征基因的表达大大提高。微阵列数据的后续验证和分析确定了Sox11b,这是SRY相关HMG盒11(SOX11)的斑马鱼直系同源物,以前未参与血管发育。我们进一步定义了在血管发育过程中的功能sox11b,并发现Sox11b功能对于斑马鱼胚胎中的发育性血管生成至关重要,特别是调节发芽的血管生成。综上所述,我们的分析说明了脊椎动物发育过程中内皮功能和分化的复杂调控。

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