首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Interaction between sodium dodecyl sulfate and membrane reconstituted aquaporins: a comparative study of spinach SoPIP2;1 and E. coli AqpZ.
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Interaction between sodium dodecyl sulfate and membrane reconstituted aquaporins: a comparative study of spinach SoPIP2;1 and E. coli AqpZ.

机译:十二烷基硫酸钠与膜重构水通道蛋白之间的相互作用:菠菜SoPIP2; 1和大肠杆菌AqpZ的比较研究。

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摘要

This study describes the interaction between sodium dodecyl sulfate (SDS) and membrane proteins reconstituted into large unilamellar lipid vesicles and detergent micelles studied by circular dichroism (CD) and polarity sensitive probe labeling. Specifically, we carried out a comparative study of two aquaporins with high structural homology SoPIP2;1 and AqpZ using identical reconstitution conditions. Our CD results indicate that SDS, when added to membrane-reconstituted aquaporins in concentrations below the SDS critical micelle concentration (CMC, ~8mM), causes helical rearrangements of both aquaporins. However, we do not find compelling evidence for unfolding. In contrast when SDS is added to detergent stabilized aquaporins, SoPIP2;1 partly unfolds, while AqpZ secondary structure is unaffected. Using a fluorescent polarity sensitive probe (Badan) we show that SDS action on membrane reconstituted SoPIP2;1 as well as AqpZ is associated with initial increased hydrophobic interactions in protein transmembrane (TM) spanning regions up to a concentration of 0.1x CMC. At higher SDS concentrations TM hydrophobic interactions, as reported by Badan, decrease and reach a plateau from SDS CMC up to 12.5x CMC. Combined, our results show that SDS does not unfold neither SoPIP2;1 nor AqpZ during transition from a membrane reconstituted form to a detergent stabilized state albeit the native folds are changed.
机译:这项研究描述了十二烷基硫酸钠(SDS)和重构为大单层脂质囊泡和去污剂胶束的膜蛋白之间的相互作用,通过圆二色性(CD)和极性敏感探针标记进行了研究。具体而言,我们使用相同的重构条件对具有高结构同源性SoPIP2; 1和AqpZ的两种水通道蛋白进行了比较研究。我们的CD结果表明,当SDS以低于SDS临界胶束浓度(CMC,〜8mM)的浓度添加到膜重构的水通道蛋白中时,会引起两种水通道蛋白的螺旋重排。但是,我们没有找到令人信服的证据来说明这一点。相反,当将SDS添加到洗涤剂稳定的水通道蛋白中时,SoPIP2; 1部分展开,而AqpZ二级结构不受影响。使用荧光极性敏感探针(Badan),我们证明了SDS对膜重构的SoPIP2; 1以及AqpZ的作用与蛋白质跨膜(TM)区域中最初的增加的疏水相互作用(浓度高达0.1x CMC)相关。如Badan所报道,在较高的SDS浓度下,疏水相互作用降低并达到SDS CMC的平稳状态,直至12.5x CMC。结合起来,我们的结果表明,SDS从膜重构形式到去污剂稳定态的过渡过程中,无论SoPIP2; 1还是AqpZ都不会展开,尽管其天然折叠发生了变化。

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