Linus Pauling Institute, Oregon State University, Corvallis, 97330, OR, USA.
Free Radic Biol Med. 2024 Aug 20;221:64-74. doi: 10.1016/j.freeradbiomed.2024.05.028. Epub 2024 May 15.
α-Tocopherol (α-T) is a vitamin, but the reasons for the α-T requirement are controversial. Given that α-T deficiency was first identified in embryos, we studied to the premier model of vertebrate embryo development, the zebrafish embryo. We developed an α-T-deficient diet for zebrafish and used fish consuming this diet to produce α-T deficient (E-) embryos. We showed that α-T deficiency causes increased lipid peroxidation, leading to metabolic dysregulation that impacts both biochemical and morphological changes at very early stages in development. These changes occur at an early developmental window, which takes place prior to an analogous time to when a human knows she is pregnant. We found that α-T limits the chain reaction of lipid peroxidation and protects metabolic pathways and integrated gene expression networks that control embryonic development. Importantly, not only is α-T critical during early development, but the neurodevelopmental process is highly dependent on α-T trafficking by the α-T transfer protein (TTPa). Data from both gene expression and evaluation of the metabolome in E- embryos suggest that the activity of the mechanistic Target of Rapamycin (mTOR) signaling pathway is dysregulated-mTOR is a master regulatory mechanism, which controls both metabolism and neurodevelopment. Our findings suggest that TTPa is needed not only for regulation of plasma α-T in adults but is a key regulator during embryogenesis.
α-生育酚(α-T)是一种维生素,但对其需求的原因存在争议。鉴于α-T 缺乏症最初是在胚胎中发现的,我们研究了脊椎动物胚胎发育的主要模型,即斑马鱼胚胎。我们为斑马鱼开发了一种缺乏α-T 的饮食,并使用食用这种饮食的鱼来产生缺乏α-T(E-)的胚胎。我们表明,α-T 缺乏会导致脂质过氧化增加,导致代谢失调,从而影响发育早期的生化和形态变化。这些变化发生在一个早期的发育窗口,这个窗口发生在人类知道自己怀孕之前的类似时间之前。我们发现,α-T 限制了脂质过氧化的连锁反应,并保护了代谢途径和控制胚胎发育的整合基因表达网络。重要的是,α-T 在早期发育过程中不仅至关重要,而且神经发育过程也高度依赖于 α-T 转移蛋白(TTPa)的 α-T 转运。来自 E- 胚胎的基因表达和代谢组学评估的数据表明,雷帕霉素(mTOR)信号通路的活性失调-mTOR 是一种主控调节机制,它控制代谢和神经发育。我们的研究结果表明,TTPa 不仅需要调节成人血浆中的 α-T,而且在胚胎发生过程中也是关键的调节因子。