Suppr超能文献

视紫红质 - 磷脂重组膜的光化学功能

Photochemical functionality of rhodopsin-phospholipid recombinant membranes.

作者信息

O'Brien D F, Costa L F, Ott R A

出版信息

Biochemistry. 1977 Apr 5;16(7):1295-303. doi: 10.1021/bi00626a009.

Abstract

Purified rhodopsin was incorporated into phospholipid bilayers to give recombinant membranes. The photochemical functionality in these systems was examined by low-temperature spectroscopy and by kinetic spectrophotometry. Changes in the absorption spectra of glycerol-water mixtures of rhodopsin-egg phosphatidylcholine and rhodopsin-asolectin recombinants were monitored after the sample was cooled to -196 degrees C, presented with light of wavelength greater than 440 nm, and then warmed gradually to room temperature. Absorption characteristics indicative of the spectral intermediates prelumirhodopsin, lumirhodopsin, metarhodopsin I, and metarhodopsin II were observed. The kinetics of the metarhodopsin I -o metarhodopsin II transition in these recombinants was studied by flash photolytic observation of the decay of meta I and the formation of meta II. Recombinants prepared from unsaturated phospholipids, e.g., asolectin, egg phosphatidylcholine, egg phosphatidylethanolamine, and dioleoylphosphatidylcholine, showed first-order kinetics for the transition with rates comparable to that of rod outer segment membranes. Recombinants prepared from saturated phosphatidylcholines have a retarded rate of conversion from meta I to meta II and are considered to be nonfunctional. The photochemical functionality of rhodopsin-phospholipid recombinants is dependent upon the presence of phospholipid unsaturation and the fluidity of the phospholipid hydrocarbon chains, and is independent of the polar head group of the phospholipid.

摘要

将纯化的视紫红质整合到磷脂双层中以形成重组膜。通过低温光谱法和动力学分光光度法研究了这些系统中的光化学功能。在将视紫红质 - 卵磷脂和视紫红质 - 大豆卵磷脂重组体的甘油 - 水混合物样品冷却至 -196℃,用波长大于440nm的光照射,然后逐渐升温至室温后,监测其吸收光谱的变化。观察到了指示光谱中间体前视紫红质、视紫红质、变视紫红质I和变视紫红质II的吸收特征。通过闪光光解观察变视紫红质I的衰减和变视紫红质II的形成,研究了这些重组体中变视紫红质I向变视紫红质II转变的动力学。由不饱和磷脂(如大豆卵磷脂、卵磷脂、脑磷脂和二油酰磷脂酰胆碱)制备的重组体显示出一级动力学转变,其速率与视杆外段膜相当。由饱和磷脂酰胆碱制备的重组体从变视紫红质I转变为变视紫红质II的速率较慢,被认为是无功能的。视紫红质 - 磷脂重组体的光化学功能取决于磷脂不饱和键的存在和磷脂烃链的流动性,并且与磷脂的极性头部基团无关。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验