利用荧光显微镜监测细胞内鞘脂运输

Q3 Biochemistry, Genetics and Molecular Biology
Emma L. Sundberg, Yongqiang Deng, Christopher G. Burd
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引用次数: 6

摘要

鞘脂是细胞器膜的结构成分,也参与信号转导途径。复杂鞘脂从早期分泌途径的细胞器合成部位被运输到高尔基体、质膜和内溶酶体系统。我们已经开发了基于荧光显微镜的方法来监测鞘脂运输协调分泌蛋白分选。鞘磷脂结合蛋白与荧光蛋白融合,我们称之为“EQ-SM”,用于监测鞘磷脂通过分泌囊泡从高尔基体到质膜的运输。提供了一种方案来确定感兴趣的查询蛋白是否通过富含EQ-SM的囊泡从细胞中分泌出来,这表明囊泡膜富含鞘磷脂。本文描述了一种补充方案,该方案实现了一种化学修饰形式的鞘氨醇,一种复杂鞘脂的代谢前体,在固定细胞中可视化神经酰胺和复杂鞘脂。©2018 by John Wiley &儿子,Inc。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Monitoring Sphingolipid Trafficking in Cells using Fluorescence Microscopy

Monitoring Sphingolipid Trafficking in Cells using Fluorescence Microscopy

Monitoring Sphingolipid Trafficking in Cells using Fluorescence Microscopy

Monitoring Sphingolipid Trafficking in Cells using Fluorescence Microscopy

Sphingolipids are structural components of organelle membranes that also participate in signal transduction pathways. Complex sphingolipids are trafficked from their site of synthesis in organelles of the early secretory pathway to the Golgi apparatus, the plasma membrane, and the endo-lysosomal system. We have developed fluorescence microscopy–based methods to monitor sphingolipid trafficking in coordination with secretory protein sorting. A sphingomyelin binding protein fused to a fluorescent protein, which we term “EQ-SM,” is implemented to monitor sphingomyelin trafficking from the Golgi apparatus to the plasma membrane via secretory vesicles. A protocol is provided to determine if a query protein of interest is secreted from the cell via vesicles enriched in EQ-SM, an indication that the vesicle membrane is enriched in sphingomyelin. A complementary protocol is described that implements a chemically modified form of sphingosine, a metabolic precursor to complex sphingolipids, to visualize ceramide and complex sphingolipids in fixed cells. © 2018 by John Wiley & Sons, Inc.

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来源期刊
Current Protocols in Cell Biology
Current Protocols in Cell Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
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期刊介绍: Developed by leading scientists in the field, Current Protocols in Cell Biology is an essential reference for researchers who study the relationship between specific molecules and genes and their location, function and structure at the cellular level. Updated every three months in all formats, CPCB is constantly evolving to keep pace with the very latest discoveries and developments.
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