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使用表面等离子体波导共振光谱法测定,磷脂酰乙醇胺可增强视紫红质在固体支持脂质双分子层中的光激活作用及与转导蛋白的结合。

Phosphatidylethanolamine enhances rhodopsin photoactivation and transducin binding in a solid supported lipid bilayer as determined using plasmon-waveguide resonance spectroscopy.

作者信息

Alves Isabel D, Salgado Gilmar F J, Salamon Zdzislaw, Brown Michael F, Tollin Gordon, Hruby Victor J

机构信息

Department of Biochemistry and Molecular Biophysics, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

Biophys J. 2005 Jan;88(1):198-210. doi: 10.1529/biophysj.104.046722. Epub 2004 Oct 22.

Abstract

Flash photolysis studies have shown that the membrane lipid environment strongly influences the ability of rhodopsin to form the key metarhodopsin II intermediate. Here we have used plasmon-waveguide resonance (PWR) spectroscopy, an optical method sensitive to both mass and conformation, to probe the effects of lipid composition on conformational changes of rhodopsin induced by light and due to binding and activation of transducin (G(t)). Octylglucoside-solubilized rhodopsin was incorporated by detergent dilution into solid-supported bilayers composed either of egg phosphatidylcholine or various mixtures of a nonlamellar-forming lipid (dioleoylphosphatidylethanolamine; DOPE) together with a lamellar-forming lipid (dioleoylphosphatidylcholine; DOPC). Light-induced proteolipid conformational changes as a function of pH correlated well with previous flash photolysis studies, indicating that the PWR spectral shifts monitored metarhodopsin II formation. The magnitude of these effects, and hence the extent of the conformational transition, was found to be proportional to the DOPE content. Our data are consistent with previous suggestions that lipids having a negative spontaneous curvature favor elongation of rhodopsin during the activation process. In addition, measurements of the G(t)/rhodopsin interaction in a DOPC/DOPE (25:75) bilayer at pH 5 demonstrated that light activation increased the affinity for G(t) from 64 nM to 0.7 nM, whereas G(t) affinity for dark-adapted rhodopsin was unchanged. By contrast, in DOPC bilayers the affinity of G(t) for light-activated rhodopsin was only 18 nM at pH 5. Moreover exchange of GDP for GTP gamma S was also monitored by PWR spectroscopy. Only the light-activated receptor was able to induce this exchange which was unaffected by DOPE incorporation. These findings demonstrate that nonbilayer-forming lipids can alter functionally linked conformational changes of G-protein-coupled receptors in membranes, as well as their interactions with downstream effector proteins.

摘要

闪光光解研究表明,膜脂环境强烈影响视紫红质形成关键中间体视紫红质II的能力。在此,我们使用了等离子体波导共振(PWR)光谱法,这是一种对质量和构象都敏感的光学方法,来探究脂质组成对视紫红质因光诱导以及转导蛋白(G(t))结合和激活而发生的构象变化的影响。通过去污剂稀释将辛基葡糖苷增溶的视紫红质掺入由蛋黄卵磷脂或非层状形成脂质(二油酰磷脂酰乙醇胺;DOPE)与层状形成脂质(二油酰磷脂酰胆碱;DOPC)的各种混合物组成的固体支持双层膜中。光诱导的蛋白脂质构象变化作为pH的函数与先前的闪光光解研究结果良好相关,表明PWR光谱位移监测到了视紫红质II的形成。发现这些效应的大小以及构象转变的程度与DOPE含量成正比。我们的数据与先前的观点一致,即具有负自发曲率的脂质有利于视紫红质在激活过程中的伸长。此外,在pH 5的DOPC/DOPE(25:75)双层膜中对视紫红质与G(t)相互作用的测量表明,光激活使对视紫红质的亲和力从64 nM增加到0.7 nM,而G(t)对暗适应视紫红质的亲和力不变。相比之下,在DOPC双层膜中,pH 5时G(t)对光激活视紫红质的亲和力仅为18 nM。此外,还通过PWR光谱法监测了GDP与GTPγS的交换。只有光激活的受体能够诱导这种交换,且不受DOPE掺入的影响。这些发现表明,非双层形成脂质可以改变膜中G蛋白偶联受体的功能相关构象变化及其与下游效应蛋白的相互作用。

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