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光控膜极化对钙组成型内流的精细调节:对细胞迁移的影响。

Fine Tuning of Calcium Constitutive Entry by Optogenetically-Controlled Membrane Polarization: Impact on Cell Migration.

机构信息

Laboratoire Signalisation et Transports Ioniques Membranaires (STIM), CNRS ERL 7003-EA 7349, Université de Poitiers, Pôle Biologie Santé, Bâtiment B36, 1 rue Georges Bonnet, TSA 51106, Cedex 9, 86073 Poitiers, France.

Dermatology Department, University Hospital of Poitiers, 86000 Poitiers, France.

出版信息

Cells. 2020 Jul 13;9(7):1684. doi: 10.3390/cells9071684.

Abstract

Anomalies in constitutive calcium entry (CCE) have been commonly attributed to cell dysfunction in pathological conditions such as cancer. Calcium influxes of this type rely on channels, such as transient receptor potential (TRP) channels, to be constitutively opened and strongly depend on membrane potential and a calcium driving force. We developed an optogenetic approach based on the expression of the halorhodopsin chloride pump to study CCE in non-excitable cells. Using C2C12 cells, we found that halorhodopsin can be used to achieve a finely tuned control of membrane polarization. Escalating the membrane polarization by incremental changes in light led to a concomitant increase in CCE through transient receptor potential vanilloid 2 (TRPV2) channels. Moreover, light-induced calcium entry through TRPV2 channels promoted cell migration. Our study shows for the first time that by modulating CCE and related physiological responses, such as cell motility, halorhodopsin serves as a potentially powerful tool that could open new avenues for the study of CCE and associated cellular behaviors.

摘要

钙内流的异常通常归因于癌症等病理条件下的细胞功能障碍。这种钙内流依赖于通道,如瞬时受体电位 (TRP) 通道,以持续开放,并强烈依赖于膜电位和钙动力。我们开发了一种基于表达氯离子泵的光遗传学方法来研究非兴奋性细胞中的钙内流。使用 C2C12 细胞,我们发现氯离子泵可以用于精细调节膜极化。通过逐步增加光的强度来增加膜极化,会通过瞬时受体电位香草素 2 (TRPV2) 通道引起钙内流的伴随增加。此外,通过 TRPV2 通道诱导的光诱导钙内流促进细胞迁移。我们的研究首次表明,通过调节钙内流和相关的生理反应,如细胞迁移,氯离子泵可作为一种潜在的强大工具,为钙内流和相关细胞行为的研究开辟新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec49/7408270/2c0c27e8c2bd/cells-09-01684-g001.jpg

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