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notch3 is essential for oligodendrocyte development and vascular integrity in zebrafish

机译:notch3对于斑马鱼少突胶质细胞发育和血管完整性至关重要

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Mutations in the human NOTCH3 gene cause CADASIL syndrome (cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy). CADASIL is an inherited small vessel disease characterized by diverse clinical manifestations including vasculopathy, neurodegeneration and dementia. Here we report two mutations in the zebrafish notch3 gene, one identified in a previous screen for mutations with reduced expression of myelin basic protein ( mbp ) and another caused by a retroviral insertion. Reduced mbp expression in notch3 mutant embryos is associated with fewer oligodendrocyte precursor cells (OPCs). Despite an early neurogenic phenotype, mbp expression recovered at later developmental stages and some notch3 homozygous mutants survived to adulthood. These mutants, as well as adult zebrafish carrying both mutant alleles together, displayed a striking stress-associated accumulation of blood in the head and fins. Histological analysis of mutant vessels revealed vasculopathy, including: an enlargement (dilation) of vessels in the telencephalon and fin, disorganization of the normal stereotyped arrangement of vessels in the fin, and an apparent loss of arterial morphological structure. Expression of hey1 , a well-known transcriptional target of Notch signaling, was greatly reduced in notch3 mutant fins, suggesting that Notch3 acts via a canonical Notch signaling pathway to promote normal vessel structure. Ultrastructural analysis confirmed the presence of dilated vessels in notch3 mutant fins and revealed that the vessel walls of presumed arteries showed signs of deterioration. Gaps in the arterial wall and the presence of blood cells outside of vessels in mutants indicated that compromised vessel structure led to hemorrhage. In notch3 heterozygotes, we found elevated expression of both notch3 itself and target genes, indicating that specific alterations in gene expression due to partial loss of Notch3 function might contribute to the abnormalities observed in heterozygous larvae and adults. Our analysis of zebrafish notch3 mutants indicates that Notch3 regulates OPC development and mbp gene expression in larvae, and maintains vascular integrity in adults.
机译:人NOTCH3基因的突变会导致CADASIL综合征(伴有皮质下梗死和白脑病的常染色体显性遗传性动脉病)。 CADASIL是一种遗传性小血管疾病,其特征在于多种临床表现,包括血管病变,神经变性和痴呆。在这里,我们报告了斑马鱼notch3基因中的两个突变,其中一个在先前的筛选中被确认为髓鞘碱性蛋白(mbp)表达降低的突变,另一个是由逆转录病毒插入引起的。 notch3突变型胚胎中mbp表达的减少与少突胶质细胞前体细胞(OPC)相关。尽管具有早期的神经原性表型,但mbp的表达在较晚的发育阶段得以恢复,一些notch3纯合突变体存活到成年。这些突变体以及一起携带两个突变体等位基因的成年斑马鱼,在头和鳍上显示出惊人的与压力相关的血液积聚。突变血管的组织学分析显示血管病变,包括:端脑和鳍中血管的增大(扩张),鳍中血管的正常定型排列的紊乱以及动脉形态结构的明显丧失。在notch3突变型鳍中,Hey1(Notch信号的众所周知的转录靶标)的表达大大降低,这表明Notch3通过典型的Notch信号通路发挥作用,从而促进正常的血管结构。超微结构分析证实了notch3突变鳍中存在扩张的血管,并显示推测的动脉血管壁显示出恶化的迹象。突变体中动脉壁的间隙和血管外血细胞的存在表明受损的血管结构导致出血。在notch3杂合子中,我们发现notch3本身和靶基因的表达均升高,这表明由于Notch3功能的部分丧失而引起的基因表达的特定变化可能会导致杂合子幼虫和成虫的异常。我们对斑马鱼notch3突变体的分析表明,Notch3调节幼虫中OPC的发育和mbp基因表达,并维持成年人的血管完整性。

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