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活细胞中单个脂质物种的从头标记和运输。

De novo labeling and trafficking of individual lipid species in live cells.

机构信息

Sam and Ann Barshop Institute for Longevity and Aging Studies, Department of Pharmacology, University of Texas Health Science Center at San Antonio, 4939 Charles Katz Drive, San Antonio, TX, 78229, USA; Perenna Pharmceuticals Inc., 14785 Omicron Drive, Ste 100, San Antonio, TX, 78245, USA.

Sam and Ann Barshop Institute for Longevity and Aging Studies, Department of Pharmacology, University of Texas Health Science Center at San Antonio, 4939 Charles Katz Drive, San Antonio, TX, 78229, USA.

出版信息

Mol Metab. 2022 Jul;61:101511. doi: 10.1016/j.molmet.2022.101511. Epub 2022 May 2.

Abstract

OBJECTIVE

Lipids exert dynamic biological functions which are determined both by their fatty acyl compositions and spatiotemporal distributions inside the cell. However, it remains a daunting task to investigate any of these features for each of the more than 1000 lipid species due to a lack of a universal labeling method for individual lipid moieties in live cells. Here we report a de novo lipid labeling method for individual lipid species with precise acyl compositions in live cells. The method is based on the principle of de novo lipid remodeling of exogenously added lysolipids with fluorescent acyl-CoA, leading to the re-synthesis of fluorescence-labeled lipids which can be imaged by confocal microscopy.

METHODS

The cells were incubated with lysolipids and a nitro-benzoxadiazolyl (NBD) labeled acyl-CoA. The newly remodeled NBD-labeled lipids and their subcellular localization were analyzed by confocal imaging in live cells. Thin layer chromatography was carried out to verify the synthesis of NBD-labeled lipids. The mitochondrial trafficking of NBD-labeled lipids was validated in live cells with targeted deletion of phospholipids transporters, including TRIAP1/PRELI protein complex and StarD7.

RESULTS

Incubation cells with lysolipids and NBD-acyl-CoA successfully labeled major lipid species with precise acyl compositions, including phospholipids, cholesterol esters, and neutral lipids, which can be analyzed by confocal imaging in live cells. In contrast to exogenously labeled lipids, the de novo labeled lipids retained full biological properties of their endogenous counterparts, including subcellular localization, trafficking, and recognition by lipid transporters. This method also uncovered some unexpected features of newly remodeled lipids and their transporters.

CONCLUSIONS

The de novo lipid labeling method not only provides a powerful tool for functional analysis of individual lipid species and lipid transporters, but also calls for re-evaluation of previously published results using exogenously labeled lipids.

摘要

目的

脂质具有动态的生物学功能,其取决于细胞内的脂肪酸组成和时空分布。然而,由于缺乏一种通用的活细胞内单个脂质部分的标记方法,对于 1000 多种脂质种类中的任何一种,研究其任何特征都是一项艰巨的任务。在这里,我们报道了一种用于活细胞中具有精确酰基组成的单个脂质种类的从头脂质标记方法。该方法基于用荧光酰基辅酶 A 对体外添加的溶血磷脂进行从头脂质重塑的原理,导致荧光标记的脂质重新合成,这些脂质可以通过共聚焦显微镜成像。

方法

用溶血磷脂和硝基苯并二唑基(NBD)标记的酰基辅酶 A 孵育细胞。在活细胞中通过共聚焦成像分析新重塑的 NBD 标记的脂质及其亚细胞定位。进行薄层层析以验证 NBD 标记的脂质的合成。在用磷脂转运蛋白(包括 TRIAP1/PRELI 蛋白复合物和 StarD7)的靶向缺失验证活细胞中 NBD 标记的脂质的线粒体运输。

结果

用溶血磷脂和 NBD-酰基辅酶 A 孵育细胞成功地标记了具有精确酰基组成的主要脂质种类,包括磷脂、胆固醇酯和中性脂质,可以在活细胞中通过共聚焦成像进行分析。与外源性标记的脂质不同,从头标记的脂质保留了其内源性脂质的全部生物学特性,包括亚细胞定位、运输和被脂质转运蛋白识别。该方法还揭示了一些新重塑的脂质及其转运蛋白的意外特征。

结论

从头脂质标记方法不仅为单个脂质种类和脂质转运蛋白的功能分析提供了有力的工具,而且还需要重新评估以前使用外源性标记的脂质发表的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fe0/9114690/9401771ca990/gr1.jpg

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