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首页> 外文期刊>BMC Developmental Biology >The Krüppel-like factor 2 and Krüppel-like factor 4 genes interact to maintain endothelial integrity in mouse embryonic vasculogenesis
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The Krüppel-like factor 2 and Krüppel-like factor 4 genes interact to maintain endothelial integrity in mouse embryonic vasculogenesis

机译:Krüppel样因子2和Krüppel样因子4基因相互作用以维持小鼠胚胎血管生成中的内皮完整性

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Background Krüppel-like Factor 2 (KLF2) plays an important role in vessel maturation during embryonic development. In adult mice, KLF2 regulates expression of the tight junction protein occludin, which may allow KLF2 to maintain vascular integrity. Adult tamoxifen-inducible Krüppel-like Factor 4 (KLF4) knockout mice have thickened arterial intima following vascular injury. The role of KLF4, and the possible overlapping functions of KLF2 and KLF4, in the developing vasculature are not well-studied. Results Endothelial breaks are observed in a major vessel, the primary head vein (PHV), in KLF2-/-KLF4-/- embryos at E9.5. KLF2-/-KLF4-/- embryos die by E10.5, which is earlier than either single knockout. Gross hemorrhaging of multiple vessels may be the cause of death. E9.5 KLF2-/-KLF4+/- embryos do not exhibit gross hemorrhaging, but cross-sections display disruptions of the endothelial cell layer of the PHV, and these embryos generally also die by E10.5. Electron micrographs confirm that there are gaps in the PHV endothelial layer in E9.5 KLF2-/-KLF4-/- embryos, and show that the endothelial cells are abnormally bulbous compared to KLF2-/- and wild-type (WT). The amount of endothelial Nitric Oxide Synthase (eNOS) mRNA, which encodes an endothelial regulator, is reduced by 10-fold in E9.5 KLF2-/-KLF4-/- compared to KLF2-/- and WT embryos. VEGFR2, an eNOS inducer, and occludin, a tight junction protein, gene expression are also reduced in E9.5 KLF2-/-KLF4-/- compared to KLF2-/- and WT embryos. Conclusions This study begins to define the roles of KLF2 and KLF4 in the embryonic development of blood vessels. It indicates that the two genes interact to maintain an intact endothelial layer. KLF2 and KLF4 positively regulate the eNOS, VEGFR2 and occludin genes. Down-regulation of these genes in KLF2-/-KLF4-/- embryos may result in the observed loss of vascular integrity.
机译:背景Krüppel样因子2(KLF2)在胚胎发育过程中的血管成熟中起着重要作用。在成年小鼠中,KLF2调节紧密连接蛋白occludin的表达,这可能使KLF2保持血管完整性。成年他莫昔芬诱导的Krüppel样因子4(KLF4)敲除小鼠在血管损伤后具有增厚的动脉内膜。 KLF4的作用,以及KLF2和KLF4在发育中的脉管系统中可能重叠的功能尚未得到很好的研究。结果在E9.5处的KLF2-/-KLF4-/-胚胎中,在主要的血管即主头静脉(PHV)中观察到内皮破裂。 KLF2-/-KLF4-/-胚胎死于E10.5,这比任何一次敲除都要早。多支血管大出血可能是死亡的原因。 E9.5 KLF2-/-KLF4 +/-胚胎没有大出血,但横截面显示PHV的内皮细胞层破裂,这些胚胎通常也会因E10.5死亡。电子显微照片证实,在E9.5 KLF2-/-KLF4-/-胚胎中,PHV内皮层中存在间隙,并且表明与KLF2-/-和野生型(WT)相比,内皮细胞异常球形。与KLF2-/-和WT胚胎相比,在E9.5 KLF2-/-KLF4-/-中,编码内皮调节因子的内皮一氧化氮合酶(eNOS)mRNA的量减少了10倍。与KLF2-/-和WT胚胎相比,E9.5 KLF2-/-KLF4-/-中的eEGFR诱导剂VEGFR2和紧密连接蛋白occludin的基因表达也降低了。结论这项研究开始确定KLF2和KLF4在血管胚胎发育中的作用。这表明这两个基因相互作用以维持完整的内皮层。 KLF2和KLF4积极调节eNOS,VEGFR2和occludin基因。这些基因在KLF2-/-KLF4-/-胚胎中的下调可能导致观察到的血管完整性丧失。

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