Tseng Wei-Chia, Johnson Escauriza Ana J, Tsai-Morris Chon-Hwa, Feldman Benjamin, Dale Ryan K, Wassif Christopher A, Porter Forbes D
Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Department of Health and Human Services, Bethesda, MD 20892, USA.
Zebrafish Core, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Department of Health and Human Services, Bethesda, MD 20892, USA.
Development. 2021 Apr 1;148(7). doi: 10.1242/dev.194258. Epub 2021 Apr 15.
Niemann-Pick disease type C (NPC) is a rare, fatal, neurodegenerative lysosomal disease caused by mutations of either NPC1 or NPC2. NPC2 is a soluble lysosomal protein that functions in coordination with NPC1 to efflux cholesterol from the lysosomal compartment. Mutations of either gene result in the accumulation of unesterified cholesterol and other lipids in the late endosome/lysosome, and reduction of cellular cholesterol bioavailability. Zygotic null npc2m/m zebrafish showed significant unesterified cholesterol accumulation at larval stages, a reduction in body size, and motor and balance defects in adulthood. However, the phenotype at embryonic stages was milder than expected, suggesting a possible role of maternal Npc2 in embryonic development. Maternal-zygotic npc2m/m zebrafish exhibited significant developmental defects, including defective otic vesicle development/absent otoliths, abnormal head/brain development, curved/twisted body axes and no circulating blood cells, and died by 72 hpf. RNA-seq analysis conducted on 30 hpf npc2+/m and MZnpc2m/m embryos revealed a significant reduction in the expression of notch3 and other downstream genes in the Notch signaling pathway, suggesting that impaired Notch3 signaling underlies aspects of the developmental defects observed in MZnpc2m/m zebrafish.
尼曼-匹克C型病(NPC)是一种由NPC1或NPC2基因突变引起的罕见、致命的神经退行性溶酶体疾病。NPC2是一种可溶性溶酶体蛋白,与NPC1协同作用,将胆固醇从溶酶体区室中流出。任何一个基因的突变都会导致晚期内体/溶酶体中未酯化胆固醇和其他脂质的积累,并降低细胞胆固醇的生物利用度。合子型纯合缺失的npc2m/m斑马鱼在幼体阶段显示出明显的未酯化胆固醇积累、体型减小以及成年期的运动和平衡缺陷。然而,胚胎阶段的表型比预期的要轻,这表明母体Npc2在胚胎发育中可能发挥作用。母源-合子型npc2m/m斑马鱼表现出明显的发育缺陷,包括耳泡发育缺陷/耳石缺失、头部/脑部发育异常、身体轴弯曲/扭曲以及无循环血细胞,并在72小时胚胎期死亡。对30小时胚胎期的npc2+/m和母源-合子型npc2m/m胚胎进行的RNA测序分析显示,Notch信号通路中notch3和其他下游基因的表达显著降低,这表明Notch3信号受损是母源-合子型npc2m/m斑马鱼中观察到的发育缺陷的部分原因。