液滴水凝胶双层中 piezo1 的荧光显微镜观察。

Oskar B Jaggers, Pietro Ridone, Boris Martinac, Matthew A B Baker
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摘要

机械敏感离子通道是一种膜门控孔,可通过机械刺激激活。本研究的重点是新发现的大型哺乳动物机械敏感离子通道 Piezo1,它与脱水遗传性口腔细胞增多症(Xerocytosis)和淋巴发育不良等疾病有关。在这里,我们利用已建立的体外人工双分子层系统来研究单个 Piezo1 通道的活性。液滴-水凝胶双分子层(DHB)系统的独特之处在于可以同时记录电活动和标记蛋白质的荧光成像。我们成功地在 DHB 中重组了荧光标记的 Piezo1 离子通道,并在同一系统中利用电生理学验证了其活性。我们证明了 hPiezo1-GFP 在不同成分的双层膜中的成功插入和激活。此外,我们还将 Piezo1 双层重组与 KcsA 通道的插入和激活测量结果进行了比较,以重现文献中报道的通道电导。总之,我们的研究结果展示了 DHB 在未来实验中的应用,它可以同时测量离子通道门控,并利用荧光可视化通道蛋白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Fluorescence microscopy of piezo1 in droplet hydrogel bilayers.

Mechanosensitive ion channels are membrane gated pores which are activated by mechanical stimuli. The focus of this study is on Piezo1, a newly discovered, large, mammalian, mechanosensitive ion channel, which has been linked to diseases such as dehydrated hereditary stomatocytosis (Xerocytosis) and lymphatic dysplasia. Here we utilize an established in-vitro artificial bilayer system to interrogate single Piezo1 channel activity. The droplet-hydrogel bilayer (DHB) system uniquely allows the simultaneous recording of electrical activity and fluorescence imaging of labelled protein. We successfully reconstituted fluorescently labelled Piezo1 ion channels in DHBs and verified activity using electrophysiology in the same system. We demonstrate successful insertion and activation of hPiezo1-GFP in bilayers of varying composition. Furthermore, we compare the Piezo1 bilayer reconstitution with measurements of insertion and activation of KcsA channels to reproduce the channel conductances reported in the literature. Together, our results showcase the use of DHBs for future experiments allowing simultaneous measurements of ion channel gating while visualising the channel proteins using fluorescence.

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