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稳定整合诱导型 SPLICS 报告基因可实现胆固醇运输调控时对多个细胞器接触位点的时空分析。

Stable Integration of Inducible SPLICS Reporters Enables Spatio-Temporal Analysis of Multiple Organelle Contact Sites upon Modulation of Cholesterol Traffic.

机构信息

Department of Biomedical Sciences, University of Padova, 35131 Padova, Italy.

Department of Biology, University of Padova, 35131 Padova, Italy.

出版信息

Cells. 2022 May 14;11(10):1643. doi: 10.3390/cells11101643.

Abstract

The study of organelle contact sites has received a great impulse due to increased interest in the understanding of their involvement in many disease conditions. Split-GFP-based contact sites (SPLICS) reporters emerged as essential tools to easily detect changes in a wide range of organelle contact sites in cultured cells and in vivo, e.g., in zebrafish larvae. We report here on the generation of a new vector library of SPLICS cloned into a piggyBac system for stable and inducible expression of the reporters in a cell line of interest to overcome any potential weakness due to variable protein expression in transient transfection studies. Stable HeLa cell lines expressing SPLICS between the endoplasmic reticulum (ER) and mitochondria (MT), the ER and plasma membrane (PM), peroxisomes (PO) and ER, and PO and MT, were generated and tested for their ability to express the reporters upon treatment with doxycycline. Moreover, to take advantage of these cellular models, we decided to follow the behavior of different membrane contact sites upon modulating cholesterol traffic. Interestingly, we found that the acute pharmacological inhibition of the intracellular cholesterol transporter 1 (NPC1) differently affects membrane contact sites, highlighting the importance of different interfaces for cholesterol sensing and distribution within the cell.

摘要

由于人们对细胞器接触位点在许多疾病状态中的作用的兴趣日益增加,对其的研究受到了极大的推动。基于分裂 GFP 的接触位点(SPLICS)报告器已成为在培养细胞和体内(例如斑马鱼幼虫)中轻松检测广泛的细胞器接触位点变化的重要工具。我们在此报告了一种新的 SPLICS 载体文库,该文库克隆到 piggyBac 系统中,用于在感兴趣的细胞系中稳定和诱导报告器的表达,以克服瞬时转染研究中由于蛋白表达变化而导致的任何潜在弱点。生成了稳定表达内质网(ER)和线粒体(MT)、ER 和质膜(PM)、过氧化物酶体(PO)和 ER 以及 PO 和 MT 之间 SPLICS 的 HeLa 细胞系,并测试了它们在使用强力霉素处理时表达报告器的能力。此外,为了利用这些细胞模型,我们决定研究胆固醇运输调节时不同膜接触位点的行为。有趣的是,我们发现细胞内胆固醇转运蛋白 1(NPC1)的急性药理抑制会以不同的方式影响膜接触位点,这突出了不同界面在细胞内胆固醇感应和分布中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c26/9139547/9d710206f31f/cells-11-01643-g001.jpg

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