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胆固醇急性耗竭和慢性耗竭诱导的膜双极取向差异。

Differential Membrane Dipolar Orientation Induced by Acute and Chronic Cholesterol Depletion.

机构信息

CSIR-Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad, 500 007, India.

School of Chemistry, Sambalpur University, Jyoti Vihar, Burla, Odisha, 768 019, India.

出版信息

Sci Rep. 2017 Jun 30;7(1):4484. doi: 10.1038/s41598-017-04769-4.

Abstract

Cholesterol plays a crucial role in cell membrane organization, dynamics and function. Depletion of cholesterol represents a popular approach to explore cholesterol-sensitivity of membrane proteins. An emerging body of literature shows that the consequence of membrane cholesterol depletion often depends on the actual process (acute or chronic), although the molecular mechanism underlying the difference is not clear. Acute depletion, using cyclodextrin-type carriers, is faster relative to chronic depletion, in which inhibitors of cholesterol biosynthesis are used. With the overall goal of addressing molecular differences underlying these processes, we monitored membrane dipole potential under conditions of acute and chronic cholesterol depletion in CHO-K1 cells, using a voltage-sensitive fluorescent dye in dual wavelength ratiometric mode. Our results show that the observed membrane dipole potential exhibits difference under acute and chronic cholesterol depletion conditions, even when cholesterol content was identical. To the best of our knowledge, these results provide, for the first time, molecular insight highlighting differences in dipolar reorganization in these processes. A comprehensive understanding of processes in which membrane cholesterol gets modulated would provide novel insight in its interaction with membrane proteins and receptors, thereby allowing us to understand the role of cholesterol in cellular physiology associated with health and disease.

摘要

胆固醇在细胞膜的组织、动态和功能中起着至关重要的作用。胆固醇的耗竭是一种探索膜蛋白胆固醇敏感性的常用方法。越来越多的文献表明,膜胆固醇耗竭的后果往往取决于实际过程(急性或慢性),尽管其背后的分子机制尚不清楚。使用环糊精型载体进行急性耗竭比使用胆固醇生物合成抑制剂进行慢性耗竭更快。为了从分子水平上解决这些过程背后的差异,我们使用双波长比率荧光染料,在 CHO-K1 细胞中急性和慢性胆固醇耗竭条件下监测膜偶极电位。我们的结果表明,即使胆固醇含量相同,在急性和慢性胆固醇耗竭条件下,观察到的膜偶极电位也存在差异。据我们所知,这些结果首次提供了分子见解,突出了这些过程中偶极重排的差异。全面了解膜胆固醇调节的过程,将为其与膜蛋白和受体的相互作用提供新的认识,从而使我们能够理解胆固醇在与健康和疾病相关的细胞生理中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0651/5493612/1145e792e3e9/41598_2017_4769_Fig1_HTML.jpg

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