...
首页> 外文期刊>Nature Metabolism >Systematic mapping of genetic interactions for de novo fatty acid synthesis identifies C12orf49 as a regulator of lipid metabolism
【24h】

Systematic mapping of genetic interactions for de novo fatty acid synthesis identifies C12orf49 as a regulator of lipid metabolism

机译:系统的遗传相互作用de映射新生脂肪酸合成标识C12orf49监管机构的脂质代谢

获取原文
获取原文并翻译 | 示例

摘要

The de novo synthesis of fatty acids has emerged as a therapeutic target for various diseases, including cancer. Because cancer cells are intrinsically buffered to combat metabolic stress, it is important to understand how cells may adapt to the loss of de novo fatty acid biosynthesis. Here, we use pooled genome-wide CRISPR screens to systematically map genetic interactions (GIs) in human HAP1 cells carrying a loss-of-function mutation in fatty acid synthase (FASN), whose product catalyses the formation of long-chain fatty acids. FASN-mutant cells show a strong dependence on lipid uptake that is reflected in negative GIs with genes involved in the LDL receptor pathway, vesicle trafficking and protein glycosylation. Further support for these functional relationships is derived from additional GI screens in query cell lines deficient in other genes involved in lipid metabolism, including LDLR, SREBF1, SREBF2 and ACACA. Our GI profiles also identify a potential role for the previously uncharacterized gene C12orf49 (which we call LUR1) in regulation of exogenous lipid uptake through modulation of SREBF2 signalling in response to lipid starvation. Overall, our data highlight the genetic determinants underlying the cellular adaptation associated with loss of denovo fatty acid synthesis and demonstrate the power of systematic GI mapping for uncovering metabolic buffering mechanisms in human cells.
机译:的从头合成脂肪酸已经出现作为治疗各种疾病的目标,包括癌症。本质上缓冲打击代谢压力,重要的是要了解细胞可能适应新创脂肪酸的损失吗生物合成。CRISPR屏幕系统映射遗传交互(GIs)在人类HAP1细胞携带丧失在脂肪酸合酶突变(FASN),其产品催化作用的形成长链脂肪酸。这是强烈依赖于脂质吸收反映在- GIs的基因参与低密度脂蛋白受体通路,泡贩运和蛋白质糖基化。来自功能关系额外的GI屏幕查询细胞系缺乏其他基因参与脂质ACACA。以前无特征的基因C12orf49(我们称之为LUR1)的监管通过调制的外源性脂质吸收SREBF2脂质信号的反应饥饿。底层细胞遗传决定因素适应与从头脂肪的损失酸合成和演示的力量为揭示代谢系统的GI映射在人类细胞中缓冲机制。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号