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一种具有增强的氯离子敏感性、光稳定性和降低的pH干扰的基因编码黄色荧光蛋白(YFP)传感器,证明了沙鼠prestin(SLC26a5)增强的跨膜氯离子转运。

A genetically-encoded YFP sensor with enhanced chloride sensitivity, photostability and reduced ph interference demonstrates augmented transmembrane chloride movement by gerbil prestin (SLC26a5).

作者信息

Zhong Sheng, Navaratnam Dhasakumar, Santos-Sacchi Joseph

机构信息

Dept. of Surgery (Otolaryngology), Yale University School of Medicine, New Haven, Connecticut, United States of America.

Dept. of Surgery (Otolaryngology), Yale University School of Medicine, New Haven, Connecticut, United States of America; Dept. of Neurobiology, Yale University School of Medicine, New Haven, Connecticut, United States of America; Dept. of Neurology, Yale University School of Medicine, New Haven, Connecticut, United States of America.

出版信息

PLoS One. 2014 Jun 5;9(6):e99095. doi: 10.1371/journal.pone.0099095. eCollection 2014.

Abstract

BACKGROUND

Chloride is the major anion in cells, with many diseases arising from disordered Cl- regulation. For the non-invasive investigation of Cl- flux, YFP-H148Q and its derivatives chameleon and Cl-Sensor previously were introduced as genetically encoded chloride indicators. Neither the Cl- sensitivity nor the pH-susceptibility of these modifications to YFP is optimal for precise measurements of Cl- under physiological conditions. Furthermore, the relatively poor photostability of YFP derivatives hinders their application for dynamic and quantitative Cl- measurements. Dynamic and accurate measurement of physiological concentrations of chloride would significantly affect our ability to study effects of chloride on cellular events.

METHODOLOGY/PRINCIPAL FINDINGS: In this study, we developed a series of YFP derivatives to remove pH interference, increase photostability and enhance chloride sensitivity. The final product, EYFP-F46L/Q69K/H148Q/I152L/V163S/S175G/S205V/A206K (monomeric Cl-YFP), has a chloride Kd of 14 mM and pKa of 5.9. The bleach time constant of 175 seconds is over 15-fold greater than wild-type EYFP. We have used the sensor fused to the transmembrane protein prestin (gerbil prestin, SLC26a5), and shown for the first time physiological (mM) chloride flux in HEK cells expressing this protein. This modified fluorescent protein will facilitate investigations of dynamics of chloride ions and their mediation of cell function.

CONCLUSIONS

Modifications to YFP (EYFP-F46L/Q69K/H148Q/I152L/V163S/S175G/S205V/A206K (monomeric Cl-YFP) results in a photostable fluorescent protein that allows measurement of physiological changes in chloride concentration while remaining minimally affected by changes in pH.

摘要

背景

氯离子是细胞内主要的阴离子,许多疾病都源于氯离子调节紊乱。为了对氯离子通量进行无创研究,此前已引入黄色荧光蛋白(YFP)的H148Q突变体及其衍生物变色龙和氯离子传感器作为基因编码的氯离子指示剂。这些YFP修饰物的氯离子敏感性和pH敏感性在生理条件下都并非最适合精确测量氯离子。此外,YFP衍生物相对较差的光稳定性阻碍了它们在动态和定量氯离子测量中的应用。动态且准确地测量生理浓度的氯离子将显著影响我们研究氯离子对细胞事件影响的能力。

方法/主要发现:在本研究中,我们开发了一系列YFP衍生物以消除pH干扰、提高光稳定性并增强氯离子敏感性。最终产物,EYFP - F46L/Q69K/H148Q/I152L/V163S/S175G/S205V/A206K(单体氯离子 - YFP),其氯离子解离常数(Kd)为14 mM,pKa为5.9。175秒的漂白时间常数比野生型EYFP大15倍以上。我们将该传感器与跨膜蛋白prestin(沙鼠prestin,SLC26a5)融合,并首次展示了表达该蛋白的HEK细胞中的生理(毫摩尔)氯离子通量。这种经过修饰的荧光蛋白将有助于研究氯离子的动态变化及其对细胞功能的调节作用。

结论

对YFP进行的修饰(EYFP - F46L/Q69K/H148Q/I152L/V163S/S175G/S205V/A206K(单体氯离子 - YFP)产生了一种光稳定的荧光蛋白,它能够测量氯离子浓度的生理变化,同时受pH变化的影响最小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1d3/4047046/5a4c85d61fee/pone.0099095.g001.jpg

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