James & Lillian Martin Centre, Sir William Dunn School of Pathology, University of Oxford, South Parks Road, Oxford OX1 3RE, UK.
Department of Physiology, Anatomy and Genetics, Sherrington Building, University of Oxford, Parks Road, Oxford OX1 3PT, UK.
Biol Open. 2023 Apr 15;12(4). doi: 10.1242/bio.059889. Epub 2023 Apr 21.
Cortical development consists of an orchestrated process in which progenitor cells exhibit distinct fate restrictions regulated by time-dependent activation of energetic pathways. Thus, the hijacking of cellular metabolism by Zika virus (ZIKV) to support its replication may contribute to damage in the developing fetal brain. Here, we showed that ZIKV replicates differently in two glycolytically distinct pools of cortical progenitors derived from human induced pluripotent stem cells (hiPSCs), which resemble the metabolic patterns of quiescence (early hi-NPCs) and immature brain cells (late hi-NPCs) in the forebrain. This differential replication alters the transcription of metabolic genes in both pools of cortical progenitors but solely upregulates the glycolytic capacity of early hi-NPCs. Analysis using Imagestream® revealed that, during early stages of ZIKV replication, in early hi-NPCs there is an increase in lipid droplet abundance and size. This stage of ZIKV replication significantly reduced the mitochondrial distribution in both early and late hi-NPCs. During later stages of ZIKV replication, late hi-NPCs show reduced mitochondrial size and abundance. The finding that there are alterations of cellular metabolism during ZIKV infection which are specific to pools of cortical progenitors at different stages of maturation may help to explain the differences in brain damage over each trimester.
皮层发育是一个有序的过程,祖细胞表现出明显的命运限制,受能量途径的时间依赖性激活调节。因此,寨卡病毒(ZIKV)劫持细胞代谢以支持其复制可能导致发育中胎儿大脑受损。在这里,我们表明 ZIKV 在源自人诱导多能干细胞(hiPSC)的两个糖酵解不同的皮层祖细胞群体中复制方式不同,这与前脑静息(早期 hi-NPC)和未成熟脑细胞(晚期 hi-NPC)的代谢模式相似。这种差异复制改变了两个皮层祖细胞群体中代谢基因的转录,但仅上调了早期 hi-NPC 的糖酵解能力。使用 Imagestream®分析表明,在 ZIKV 复制的早期阶段,早期 hi-NPC 中脂质滴的丰度和大小增加。ZIKV 复制的这个阶段显著降低了早期和晚期 hi-NPC 中线粒体的分布。在 ZIKV 复制的后期阶段,晚期 hi-NPC 显示线粒体大小和丰度降低。寨卡病毒感染期间细胞代谢发生改变,这在不同成熟阶段的皮层祖细胞群体中是特异性的,这可能有助于解释每个孕龄大脑损伤的差异。