Contact-FP: A Dimerization-Dependent Fluorescent Protein Toolkit for Visualizing Membrane Contact Site Dynamics.

Contact (Thousand Oaks (Ventura County, Calif.)) Pub Date : 2024-02-04 eCollection Date: 2024-01-01 DOI:10.1177/25152564241228911
Gregory E Miner, Sidney Y Smith, Wendy K Showalter, Christina M So, Joey V Ragusa, Alex E Powers, Maria Clara Zanellati, Chih-Hsuan Hsu, Michelle F Marchan, Sarah Cohen
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引用次数: 0

Abstract

Membrane contact sites (MCSs) are sites of close apposition between two organelles used to exchange ions, lipids, and information. Cells respond to changing environmental or developmental conditions by modulating the number, extent, or duration of MCSs. Because of their small size and dynamic nature, tools to study the dynamics of MCSs in live cells have been limited. Dimerization-dependent fluorescent proteins (ddFPs) targeted to organelle membranes are an ideal tool for studying MCS dynamics because they reversibly interact to fluoresce specifically at the interface between two organelles. Here, we build on previous work using ddFPs as sensors to visualize the morphology and dynamics of MCSs. We engineered a suite of ddFPs called Contact-FP that targets ddFP monomers to lipid droplets (LDs), the endoplasmic reticulum (ER), mitochondria, peroxisomes, lysosomes, plasma membrane, caveolae, and the cytoplasm. We show that these probes correctly localize to their target organelles. Using LDs as a test case, we demonstrate that Contact-FP pairs specifically localize to the interface between two target organelles. Titration of LD-mitochondria ddFPs revealed that these sensors can be used at high concentrations to drive MCSs or can be titrated down to minimally perturb and visualize endogenous MCSs. We show that Contact-FP probes can be used to: (1) visualize LD-mitochondria MCS dynamics, (2) observe changes in LD-mitochondria MCS dynamics upon overexpression of PLIN5, a known LD-mitochondrial tether, and (3) visualize two MCSs that share one organelle simultaneously (e.g., LD-mitochondria and LD-ER MCSs). Contact-FP probes can be optimized to visualize MCSs between any pair of organelles represented in the toolkit.

Contact-FP:用于观察膜接触点动态的二聚化依赖性荧光蛋白工具包。
膜接触点(MCSs)是两个细胞器之间的紧密结合点,用于交换离子、脂质和信息。细胞通过调节膜接触点的数量、范围或持续时间来应对不断变化的环境或发育条件。由于MCSs体积小、动态性强,研究活细胞中MCSs动态的工具一直很有限。以细胞器膜为靶标的二聚化依赖性荧光蛋白(ddFPs)是研究MCS动态的理想工具,因为它们可逆地相互作用,在两个细胞器之间的界面上特异性地发出荧光。在此,我们在先前工作的基础上,利用 ddFPs 作为传感器来观察 MCS 的形态和动态。我们设计了一套名为 Contact-FP 的 ddFP,可将 ddFP 单体靶向脂滴 (LD)、内质网 (ER)、线粒体、过氧物酶体、溶酶体、质膜、洞穴和细胞质。我们的研究表明,这些探针能正确定位到目标细胞器。以LD为例,我们证明了Contact-FP探针对可特异性地定位到两个目标细胞器之间的界面。对 LD-线粒体 ddFPs 的滴定表明,这些探针可以在高浓度下用于驱动 MCSs,也可以在低浓度下进行滴定,以尽量减少对内源性 MCSs 的扰动并使其可视化。我们发现,Contact-FP 探针可用于(1) 观察 LD 线粒体 MCS 动态;(2) 观察过表达 PLIN5(已知的 LD 线粒体拴系)时 LD 线粒体 MCS 动态的变化;(3) 同时观察共享一个细胞器的两个 MCS(如 LD 线粒体和 LD-ER MCS)。接触-荧光探针可进行优化,以观察工具包中任何一对细胞器之间的 MCS。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.10
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