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一种基于荧光的新方法鉴定了调控脂滴代谢的蛋白磷酸酶。

A new fluorescence-based method identifies protein phosphatases regulating lipid droplet metabolism.

机构信息

Instituto de Bioquímica Médica, Programa de Biologia Molecular e Biotecnologia, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Rio de Janeiro, Brazil.

出版信息

PLoS One. 2010 Oct 28;5(10):e13692. doi: 10.1371/journal.pone.0013692.

Abstract

In virtually every cell, neutral lipids are stored in cytoplasmic structures called lipid droplets (LDs) and also referred to as lipid bodies or lipid particles. We developed a rapid high-throughput assay based on the recovery of quenched BODIPY-fluorescence that allows to quantify lipid droplets. The method was validated by monitoring lipid droplet turnover during growth of a yeast culture and by screening a group of strains deleted in genes known to be involved in lipid metabolism. In both tests, the fluorimetric assay showed high sensitivity and good agreement with previously reported data using microscopy. We used this method for high-throughput identification of protein phosphatases involved in lipid droplet metabolism. From 65 yeast knockout strains encoding protein phosphatases and its regulatory subunits, 13 strains revealed to have abnormal levels of lipid droplets, 10 of them having high lipid droplet content. Strains deleted for type I protein phosphatases and related regulators (ppz2, gac1, bni4), type 2A phosphatase and its related regulator (pph21 and sap185), type 2C protein phosphatases (ptc1, ptc4, ptc7) and dual phosphatases (pps1, msg5) were catalogued as high-lipid droplet content strains. Only reg1, a targeting subunit of the type 1 phosphatase Glc7p, and members of the nutrient-sensitive TOR pathway (sit4 and the regulatory subunit sap190) were catalogued as low-lipid droplet content strains, which were studied further. We show that Snf1, the homologue of the mammalian AMP-activated kinase, is constitutively phosphorylated (hyperactive) in sit4 and sap190 strains leading to a reduction of acetyl-CoA carboxylase activity. In conclusion, our fast and highly sensitive method permitted us to catalogue protein phosphatases involved in the regulation of LD metabolism and present evidence indicating that the TOR pathway and the SNF1/AMPK pathway are connected through the Sit4p-Sap190p pair in the control of lipid droplet biogenesis.

摘要

在几乎每一个细胞中,中性脂质都储存在称为脂滴 (LDs) 的细胞质结构中,也称为脂体或脂粒。我们开发了一种基于淬灭 BODIPY-荧光恢复的快速高通量测定法,该方法可用于定量脂滴。该方法通过监测酵母培养物生长过程中脂滴的周转率以及筛选一组已知参与脂质代谢的基因缺失菌株进行了验证。在这两种测试中,荧光测定法显示出高灵敏度,并与使用显微镜报道的先前数据具有良好的一致性。我们使用这种方法进行了高通量鉴定参与脂滴代谢的蛋白磷酸酶。在编码蛋白磷酸酶及其调节亚基的 65 个酵母敲除菌株中,有 13 个菌株显示出脂滴水平异常,其中 10 个菌株的脂滴含量较高。I 型蛋白磷酸酶和相关调节剂 (ppz2、gac1、bni4)、2A 磷酸酶及其相关调节剂 (pph21 和 sap185)、2C 蛋白磷酸酶 (ptc1、ptc4、ptc7) 和双磷酸酶 (pps1、msg5) 的缺失菌株被归类为高脂滴含量菌株。只有 Glc7p 的 I 型磷酸酶的靶向亚基 Reg1 和营养敏感的 TOR 途径 (sit4 和调节亚基 sap190) 的成员被归类为低脂滴含量菌株,并对其进行了进一步研究。我们表明,哺乳动物 AMP 激活的激酶同源物 Snf1 在 sit4 和 sap190 菌株中持续磷酸化 (高活性),导致乙酰辅酶 A 羧化酶活性降低。总之,我们快速且高度敏感的方法使我们能够对参与 LD 代谢调节的蛋白磷酸酶进行分类,并提供证据表明 TOR 途径和 SNF1/AMPK 途径通过 Sit4p-Sap190p 对连接在控制脂质滴生物发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9c2/2965658/24100852f8e6/pone.0013692.g001.jpg

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