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细胞器选择性点击标记与流式细胞术相结合,可对参与磷脂酰胆碱代谢的基因进行 pooled CRISPR 筛选。

Organelle-selective click labeling coupled with flow cytometry allows pooled CRISPR screening of genes involved in phosphatidylcholine metabolism.

机构信息

Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Nishikyo-ku, Kyoto 615-8510, Japan; PRESTO (Precursory Research for Embryonic Science and Technology), JST, Sanbancho, Chiyodaku, Tokyo 102-0075, Japan.

Department of Biophysical Chemistry, Kyoto Pharmaceutical University, 5 Misasaginakauchi-cho, Yamashina-ku, Kyoto 607-8414, Japan.

出版信息

Cell Metab. 2023 Jun 6;35(6):1072-1083.e9. doi: 10.1016/j.cmet.2023.02.014. Epub 2023 Mar 13.

Abstract

Cellular lipid synthesis and transport are governed by intricate protein networks. Although genetic screening should contribute to deciphering the regulatory networks of lipid metabolism, technical challenges remain-especially for high-throughput readouts of lipid phenotypes. Here, we coupled organelle-selective click labeling of phosphatidylcholine (PC) with flow cytometry-based CRISPR screening technologies to convert organellar PC phenotypes into a simple fluorescence readout for genome-wide screening. This technique, named O-ClickFC, was successfully applied in genome-scale CRISPR-knockout screens to identify previously reported genes associated with PC synthesis (PCYT1A, ACACA), vesicular membrane trafficking (SEC23B, RAB5C), and non-vesicular transport (PITPNB, STARD7). Moreover, we revealed previously uncharacterized roles of FLVCR1 as a choline uptake facilitator, CHEK1 as a post-translational regulator of the PC-synthetic pathway, and CDC50A as responsible for the translocation of PC to the outside of the plasma membrane bilayer. These findings demonstrate the versatility of O-ClickFC as an unprecedented platform for genetic dissection of cellular lipid metabolism.

摘要

细胞脂质合成和运输受复杂的蛋白质网络调控。尽管遗传筛选应该有助于揭示脂质代谢的调控网络,但仍存在技术挑战——特别是对于脂质表型的高通量读取。在这里,我们将细胞器选择性点击标记的磷脂酰胆碱(PC)与基于流式细胞术的 CRISPR 筛选技术相结合,将细胞器 PC 表型转化为一种简单的荧光读取,用于全基因组筛选。这项名为 O-ClickFC 的技术成功地应用于全基因组 CRISPR 敲除筛选中,以鉴定与 PC 合成(PCYT1A、ACACA)、囊泡膜运输(SEC23B、RAB5C)和非囊泡运输(PITPNB、STARD7)相关的先前报道的基因。此外,我们揭示了 FLVCR1 作为胆碱摄取促进剂、CHEK1 作为 PC 合成途径的翻译后调节剂以及 CDC50A 负责将 PC 转运到质膜双层外侧的先前未被表征的作用。这些发现证明了 O-ClickFC 作为遗传剖析细胞脂质代谢的空前平台的多功能性。

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