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通过荧光猝灭的视差分析对磷脂双层中胆红素进行定位。

Localization of bilirubin in phospholipid bilayers by parallax analysis of fluorescence quenching.

作者信息

Zucker S D, Goessling W, Bootle E J, Sterritt C

机构信息

Division of Digestive Diseases, University of Cincinnati, Cincinnati, OH 45243, USA.

出版信息

J Lipid Res. 2001 Sep;42(9):1377-88.

Abstract

It has been proposed that the neurotoxicity observed in severely jaundiced infants results from the binding of unconjugated bilirubin to nerve cell membranes. However, despite potentially important clinical ramifications, there remains significant controversy regarding the physical nature of bilirubin-membrane interactions. We used the technique of parallax analysis of fluorescence quenching (Chattopadhyay, A., and E. London. 1987. Biochemistry. 26: 39;-45) to measure the depth of penetration of bilirubin in model phospholipid bilayers. The localization of unconjugated bilirubin and ditaurobilirubin within small unilamellar vesicles composed of dioleoylphosphatidylcholine was determined through an analysis of the quenching of bilirubin fluorescence by spin-labeled phospholipids, and by bilirubin-mediated quenching of a series of anthroyloxy fatty acid probes at various depths within the membrane bilayer. Findings were further verified with potassium iodide as an aqueous quencher. Our results indicate that, at pH 10, unconjugated bilirubin localizes approximately 20 A from the bilayer center, in the region of the polar head groups. Further analyses suggest a modest influence of pH, membrane cholesterol content, and vesicle diameter on the bilirubin penetration depth. Taken together, these data support that, under physiologic conditions, bilirubin localizes to the polar region of phospholipid bilayers, near the membrane-water interface.

摘要

有人提出,在重症黄疸婴儿中观察到的神经毒性是由于未结合胆红素与神经细胞膜结合所致。然而,尽管存在潜在的重要临床影响,但关于胆红素与膜相互作用的物理性质仍存在重大争议。我们使用荧光猝灭的视差分析技术(Chattopadhyay,A.和E. London. 1987.《生物化学》。26: 39 - 45)来测量胆红素在模型磷脂双层中的渗透深度。通过分析自旋标记磷脂对胆红素荧光的猝灭以及胆红素对膜双层内不同深度的一系列蒽氧基脂肪酸探针的猝灭作用,确定了未结合胆红素和二牛磺胆红素在由二油酰磷脂酰胆碱组成的小单层囊泡中的定位。用碘化钾作为水性猝灭剂进一步验证了研究结果。我们的结果表明,在pH 10时,未结合胆红素定位在距双层中心约20埃处,位于极性头部基团区域。进一步分析表明,pH、膜胆固醇含量和囊泡直径对胆红素渗透深度有适度影响。综上所述,这些数据支持在生理条件下,胆红素定位于磷脂双层的极性区域,靠近膜 - 水界面。

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