Low-input lipidomics reveals lipid metabolism remodelling during early mammalian embryo development

Low-input lipidomics reveals lipid metabolism remodelling during early mammalian embryo development
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DOI:
10.1038/s41556-023-01341-3
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发表时间:
2024-02-01
影响因子:
21.3
通讯作者:
Zhang,Jin
Zhang,Jin
中科院分区:
生物学1区
文献类型:
--
作者:
Zhang,Ling;Zhao,Jing;Zhang,Jin

文献摘要

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脂质对于能量储存、膜结构和细胞信号传导是不可或缺的。然而,在哺乳动物早期胚胎发育的内源性脂质的各种类别的动态变化还没有系统的特点。在这里,我们全面研究了小鼠和人类早期胚胎发育过程中的动态脂质景观。不同发育阶段的脂质特征是不同的,特别是磷脂类。我们强调,随着胚胎发育到囊胚阶段,高度的磷脂不饱和是一个保守特征。此外,我们表明,脂质去饱和酶,如SCD 1所需的体外囊胚发育和囊胚植入。其机制之一是通过调节不饱和脂肪酸介导的质膜和顶端蛋白的流动性以及在八细胞胚胎发育到胚泡期间建立顶端-基底极性。总的来说,我们的研究提供了一个宝贵的资源重塑的内源性脂质体在哺乳动物植入前胚胎发育和机制的见解,胚胎发生和植入的脂质不饱和的调节。
Lipids are indispensable for energy storage, membrane structure and cell signalling. However, dynamic changes in various categories of endogenous lipids in mammalian early embryonic development have not been systematically characterized. Here we comprehensively investigated the dynamic lipid landscape during mouse and human early embryo development. Lipid signatures of different developmental stages are distinct, particularly for the phospholipid classes. We highlight that the high degree of phospholipid unsaturation is a conserved feature as embryos develop to the blastocyst stage. Moreover, we show that lipid desaturases such as SCD1 are required for in vitro blastocyst development and blastocyst implantation. One of the mechanisms is through the regulation of unsaturated fatty-acid-mediated fluidity of the plasma membrane and apical proteins and the establishment of apical–basal polarity during development of the eight-cell embryo to the blastocyst. Overall, our study provides an invaluable resource about the remodelling of the endogenous lipidome in mammalian preimplantation embryo development and mechanistic insights into the regulation of embryogenesis and implantation by lipid unsaturation.