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利用基于 GRAM 结构域的生物传感器可视化可及胆固醇。

Visualization of accessible cholesterol using a GRAM domain-based biosensor.

机构信息

Lee Kong Chian School of Medicine, Nanyang Technological University, Singapore, 308232, Singapore.

Skin Research Institute of Singapore (SRIS), Singapore, 308232, Singapore.

出版信息

Nat Commun. 2023 Oct 25;14(1):6773. doi: 10.1038/s41467-023-42498-7.

Abstract

Cholesterol is important for membrane integrity and cell signaling, and dysregulation of the distribution of cellular cholesterol is associated with numerous diseases, including neurodegenerative disorders. While regulated transport of a specific pool of cholesterol, known as "accessible cholesterol", contributes to the maintenance of cellular cholesterol distribution and homeostasis, tools to monitor accessible cholesterol in live cells remain limited. Here, we engineer a highly sensitive accessible cholesterol biosensor by taking advantage of the cholesterol-sensing element (the GRAM domain) of an evolutionarily conserved lipid transfer protein, GRAMD1b. Using this cholesterol biosensor, which we call GRAM-W, we successfully visualize in real time the distribution of accessible cholesterol in many different cell types, including human keratinocytes and iPSC-derived neurons, and show differential dependencies on cholesterol biosynthesis and uptake for maintaining levels of accessible cholesterol. Furthermore, we combine GRAM-W with a dimerization-dependent fluorescent protein (ddFP) and establish a strategy for the ultrasensitive detection of accessible plasma membrane cholesterol. These tools will allow us to obtain important insights into the molecular mechanisms by which the distribution of cellular cholesterol is regulated.

摘要

胆固醇对于膜完整性和细胞信号转导很重要,细胞胆固醇分布的失调与许多疾病有关,包括神经退行性疾病。虽然特定的胆固醇池(称为“可及性胆固醇”)的调节运输有助于维持细胞胆固醇的分布和内稳态,但用于监测活细胞中可及性胆固醇的工具仍然有限。在这里,我们利用一种进化上保守的脂质转运蛋白 GRAMD1b 的胆固醇感应元件(GRAM 结构域),设计了一种高度敏感的可及性胆固醇生物传感器。我们使用这种胆固醇生物传感器,称为 GRAM-W,成功地实时可视化了许多不同细胞类型(包括人角质形成细胞和 iPSC 衍生神经元)中可及性胆固醇的分布,并显示了对胆固醇生物合成和摄取的依赖性差异,以维持可及性胆固醇的水平。此外,我们将 GRAM-W 与二聚依赖性荧光蛋白(ddFP)结合,并建立了一种用于超灵敏检测可及性质膜胆固醇的策略。这些工具将使我们能够深入了解细胞胆固醇分布调节的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/159f/10600248/584c599ce274/41467_2023_42498_Fig1_HTML.jpg

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