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高维超分辨率成像揭示了亚细胞脂质膜的异质性和动态性。

High-dimensional super-resolution imaging reveals heterogeneity and dynamics of subcellular lipid membranes.

机构信息

UTS-SUStech Joint Research Centre for Biomedical Materials & Devices, Department of Biomedical Engineering, College of Engineering, Southern University of Science and Technology, Shenzhen, Guangdong, P.R. China.

Department of Biomedical Engineering, College of Engineering, Peking University, 100871, Beijing, China.

出版信息

Nat Commun. 2020 Nov 18;11(1):5890. doi: 10.1038/s41467-020-19747-0.

Abstract

Lipid membranes are found in most intracellular organelles, and their heterogeneities play an essential role in regulating the organelles' biochemical functionalities. Here we report a Spectrum and Polarization Optical Tomography (SPOT) technique to study the subcellular lipidomics in live cells. Simply using one dye that universally stains the lipid membranes, SPOT can simultaneously resolve the membrane morphology, polarity, and phase from the three optical-dimensions of intensity, spectrum, and polarization, respectively. These high-throughput optical properties reveal lipid heterogeneities of ten subcellular compartments, at different developmental stages, and even within the same organelle. Furthermore, we obtain real-time monitoring of the multi-organelle interactive activities of cell division and successfully reveal their sophisticated lipid dynamics during the plasma membrane separation, tunneling nanotubules formation, and mitochondrial cristae dissociation. This work suggests research frontiers in correlating single-cell super-resolution lipidomics with multiplexed imaging of organelle interactome.

摘要

脂质膜存在于大多数细胞内细胞器中,其异质性在调节细胞器的生化功能方面起着至关重要的作用。在这里,我们报告了一种光谱和偏振光学层析(SPOT)技术,用于研究活细胞中的亚细胞脂质组学。只需使用一种普遍染色脂质膜的染料,SPOT 就可以分别从强度、光谱和偏振的三个光学维度来解析膜形态、极性和相。这些高通量的光学特性揭示了十个亚细胞隔室在不同发育阶段甚至在同一个细胞器中的脂质异质性。此外,我们还实时监测了细胞分裂的多细胞器相互作用活动,并成功揭示了它们在质膜分离、隧道纳米管形成和线粒体嵴解聚过程中的复杂脂质动力学。这项工作为将单细胞超分辨率脂质组学与细胞器相互作用组的多路成像相关联提供了研究前沿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12b9/7674432/4294d83d0b97/41467_2020_19747_Fig1_HTML.jpg

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