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全基因组 CRISPR/Cas9 筛选揭示芳香烃受体可刺激神经鞘脂水平。

A genome-wide CRISPR/Cas9 screen reveals that the aryl hydrocarbon receptor stimulates sphingolipid levels.

机构信息

Genetics of Development and Disease Branch, NIDDK, National Institutes of Health, Bethesda, Maryland 20892.

Genetics of Development and Disease Branch, NIDDK, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

J Biol Chem. 2020 Mar 27;295(13):4341-4349. doi: 10.1074/jbc.AC119.011170. Epub 2020 Feb 6.

Abstract

Sphingolipid biosynthesis generates lipids for membranes and signaling that are crucial for many developmental and physiological processes. In some cases, large amounts of specific sphingolipids must be synthesized for specialized physiological functions, such as during axon myelination. How sphingolipid synthesis is regulated to fulfill these physiological requirements is not known. To identify genes that positively regulate membrane sphingolipid levels, here we employed a genome-wide CRISPR/Cas9 loss-of-function screen in HeLa cells using selection for resistance to Shiga toxin, which uses a plasma membrane-associated glycosphingolipid, globotriaosylceramide (Gb3), for its uptake. The screen identified several genes in the sphingolipid biosynthetic pathway that are required for Gb3 synthesis, and it also identified the aryl hydrocarbon receptor (AHR), a ligand-activated transcription factor widely involved in development and physiology, as being required for Gb3 biosynthesis. AHR bound and activated the gene promoter of serine palmitoyltransferase small subunit A (), which encodes a subunit of the serine palmitoyltransferase that catalyzes the first and rate-limiting step in sphingolipid biosynthesis. knockout HeLa cells exhibited significantly reduced levels of cell-surface Gb3, and both knockout HeLa cells and tissues from knockout mice displayed decreased sphingolipid content as well as significantly reduced expression of several key genes in the sphingolipid biosynthetic pathway. The sciatic nerve of knockout mice exhibited both reduced ceramide content and reduced myelin thickness. These results indicate that AHR up-regulates sphingolipid levels and is important for full axon myelination, which requires elevated levels of membrane sphingolipids.

摘要

鞘脂生物合成生成膜和信号转导所必需的脂质,这些脂质对许多发育和生理过程至关重要。在某些情况下,大量特定的鞘脂必须被合成以实现专门的生理功能,例如在轴突髓鞘形成期间。鞘脂合成如何被调节以满足这些生理需求尚不清楚。为了鉴定正向调节膜鞘脂水平的基因,我们在这里在 HeLa 细胞中使用 CRISPR/Cas9 全基因组基因敲除筛选,筛选条件是对 Shiga 毒素的抗性,Shiga 毒素利用质膜相关糖鞘脂,即神经节苷脂 Gb3,进行摄取。该筛选鉴定了鞘脂生物合成途径中几个参与 Gb3 合成的基因,还鉴定了芳烃受体 (AHR),AHR 是一种配体激活的转录因子,广泛参与发育和生理过程,是 Gb3 生物合成所必需的。AHR 结合并激活编码丝氨酸棕榈酰转移酶小亚基 A()的基因启动子,该基因编码丝氨酸棕榈酰转移酶的一个亚基,该酶催化鞘脂生物合成的第一步和限速步骤。缺失 HeLa 细胞表现出细胞表面 Gb3 水平显著降低,并且缺失 HeLa 细胞和缺失小鼠组织中的鞘脂含量均降低,以及鞘脂生物合成途径中的几个关键基因的表达水平显著降低。缺失小鼠的坐骨神经既表现出神经酰胺含量降低,也表现出髓鞘厚度降低。这些结果表明,AHR 上调鞘脂水平,对于完全轴突髓鞘形成很重要,而完全轴突髓鞘形成需要提高膜鞘脂水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a78/7105297/b3123ca6e95a/zbc9992020700001.jpg

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