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活 U937 细胞膜上阴离子通道 VRAC 亚基 LRRC8A 的流动荧光定量。

Flow fluorometry quantification of anion channel VRAC subunit LRRC8A at the membrane of living U937 cells.

机构信息

Institute of Cytology, Russian Academy of Sciences, St-Petersburg, Russia.

School of Biomedical Sciences, Kent State University, Kent, OH, USA.

出版信息

Channels (Austin). 2020 Dec;14(1):45-52. doi: 10.1080/19336950.2020.1730535.

Abstract

Assessing the expression of channels on the cell membrane is a necessary step in studying the functioning of ion channels in living cells. We explore, first, if endogenous VRAC can be assayed using flow cytometry and a commercially available antibody against an extracellular loop of the LRRC8A, also known as SWELL1, subunit of the VRAC channel. The second goal is to determine if an increase in the number of VRAC channels at the cell membrane is responsible for an increase in chloride permeability of the membrane in two well-known cases: during staurosporine (STS)-induced apoptosis and after water balance disturbance caused by hypotonic medium. Human suspension lymphoid cells U937 were used as they are suitable for flow fluorometry and because we have recently studied their membrane chloride permeability during apoptosis. We found that surface expression of endogenous LRRC8A subunits can be quantified in living U937 cells using flow fluorometry with the Alomone Lab antibody. Further, we revealed that treatment of cells for 1 hour using STS or a hypotonic solution did not change the number of LRRC8A subunits to the extent that would correspond to changes in the membrane chloride permeability determined by ion content analysis. This indicates that prolonged increase in chloride permeability of the cell membrane during apoptotic cell shrinkage or cell volume regulation under hypotonicity in U937 cells occurs without altering cell surface expression of VRAC.

摘要

评估细胞膜上通道的表达是研究活细胞中离子通道功能的必要步骤。我们首先探讨是否可以使用流式细胞术和针对 LRRC8A 细胞外环的商业抗体来检测内源性 VRAC,LRRC8A 也称为 SWELL1,是 VRAC 通道的亚基。第二个目标是确定细胞膜上 VRAC 通道数量的增加是否导致两种情况下膜氯离子通透性的增加:在 staurosporine (STS)诱导的细胞凋亡期间和在由低渗介质引起的水平衡紊乱之后。选择悬浮的人淋巴样细胞 U937 是因为它们适合流式荧光术,并且因为我们最近研究了它们在细胞凋亡过程中的膜氯离子通透性。我们发现,使用 Alomone Lab 抗体通过流式荧光术可以定量活 U937 细胞中内源性 LRRC8A 亚基的表面表达。此外,我们揭示了用 STS 或低渗溶液处理细胞 1 小时不会使 LRRC8A 亚基的数量发生变化,这种变化与通过离子含量分析确定的膜氯离子通透性变化相对应。这表明,在 U937 细胞中凋亡细胞收缩或低渗条件下细胞体积调节过程中,细胞膜氯离子通透性的持续增加不会改变 VRAC 的细胞表面表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4afb/7039630/55aa326ee8c9/kchl-14-01-1730535-g001.jpg

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