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用蛋白脂球包裹从脱氮副球菌 Paracoccus denitrificans 中提取的细胞色素 c 氧化酶。

Proteo-lipobeads to encapsulate cytochrome c oxidase from Paracoccus denitrificans.

机构信息

Biosensor Technologies, Austrian Institute of Technology GmbH, AIT, Donau-City-Str. 1, 1220 Vienna, Austria; University of Natural Resources and Life Sciences, Gregor-Mendel-Straβe 33, 1180 Wien, Austria.

Biosensor Technologies, Austrian Institute of Technology GmbH, AIT, Donau-City-Str. 1, 1220 Vienna, Austria; Center of Electrochemical Surface Technology, CEST, Viktor-Kaplan-Str. 2, 2700 Wiener Neustadt, Austria.

出版信息

J Colloid Interface Sci. 2017 Aug 15;500:119-125. doi: 10.1016/j.jcis.2017.04.009. Epub 2017 Apr 5.

DOI:10.1016/j.jcis.2017.04.009
PMID:28407595
Abstract

Proteo-lipobeads (PLBs) are investigated as cell-free model systems to encapsulate membrane proteins such as ion channels and transporters. PLBs are based on nickel nitrile tri-acetic acid (Ni-NTA)-functionalized agarose beads, onto which membrane proteins (MP) are bound via histidine(his)-tag. Composite beads thus obtained (subsequently called proteobeads) are dialyzed in the presence of lipid micelles to form PLBs. As an example we employed cytochrome c oxidase from P. denitrificans with a his-tag fused to the C-terminus of subunitI. In this orientation the P side of CcO faces the outside of the PLB and hence protons are released to the outer aqueous phase, when electron transfer is initiated by light excitation of Ru complexes. Proton release kinetics was probed by fluorescence microscopy using the pH-sensitive sensor molecule fluorescein DHPE inserted into the lipid layer. In order to monitor the generation of membrane potentials we performed a FLIPR assay on the CcO embedded in PLBs using the FRET pair CC2-DMPE/DiSBAC2(3). The combined results show that PLBs can be used as a model system designed to quantify the kinetic parameters of membrane proteins. In addition, the FLIPR assay demonstrates the feasibility of PLBs for high throughput screening applications.

摘要

蛋白脂质体(PLBs)被研究为无细胞模型系统,以包裹膜蛋白,如离子通道和转运蛋白。PLBs 基于镍亚硝酰三乙酸(Ni-NTA)功能化琼脂糖珠,通过组氨酸(his)标签将膜蛋白(MP)结合到珠上。由此获得的复合珠(随后称为蛋白珠)在脂质胶束存在下透析以形成 PLBs。作为一个例子,我们使用来自 P. denitrificans 的细胞色素 c 氧化酶,其 C 末端融合有 his 标签。在这种构象中,CcO 的 P 侧朝向 PLB 的外部,因此当电子转移被 Ru 配合物的光激发引发时,质子被释放到外部水相。通过将 pH 敏感的荧光素 DHPE 插入脂质层中,使用荧光显微镜探测质子释放动力学。为了监测膜电位的产生,我们使用 FRET 对 CC2-DMPE/DiSBAC2(3) 嵌入 PLBs 中的 CcO 进行了 FLIPR 测定。综合结果表明,PLBs 可用作设计用于定量膜蛋白动力学参数的模型系统。此外,FLIPR 测定证明了 PLBs 用于高通量筛选应用的可行性。

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