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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Polar residues in transmembrane helices can decrease electrophoretic mobility in polyacrylamide gels without causing helix dimerization.
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Polar residues in transmembrane helices can decrease electrophoretic mobility in polyacrylamide gels without causing helix dimerization.

机译:跨膜螺旋中的极性残基可以降低聚丙烯酰胺凝胶中的电泳迁移率,而不会引起螺旋二聚化。

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摘要

There are only a few available methods to study lateral interactions and self assembly of transmembrane helices. One of the most frequently used methods is sodium dodecylsulfate polyacrylamide gel electrophoresis (SDS-PAGE) which can report on strong interactions between peptides in SDS solution. Here we offer a cautionary tale about studying the folding and assembly of membrane proteins using peptides and SDS-PAGE experiments as a membrane mimetic system. At least for the specific peptide and detergent systems studied here, we show that a polar asparagine residue in the 12th position of an otherwise hydrophobic helical segment of 20 amino acids causes a peptide to migrate on SDS-PAGE gels with an apparent molecular weight that is twice its true molecular weight, suggesting dimerization. However when examined carefully in SDS solutions and in situ in the polyacrylamide gel itself using Forster resonance energy transfer no interaction can be detected. Instead we show evidence suggesting that differential interactions between peptide and detergent drive the differences in electrophoretic mobility without any interaction between peptides. These results emphasize the need to apply multiple independent techniques to the study of membrane protein folding, and they highlight the usefulness of studying folding and structure of membrane proteins in lipid membranes rather than in detergents.
机译:只有很少的可用方法来研究跨膜螺旋的横向相互作用和自组装。最常用的方法之一是十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE),它可以报告SDS溶液中肽之间的强相互作用。在这里,我们提供了一个有关使用肽和SDS-PAGE实验作为膜模拟系统研究膜蛋白折叠和组装的警示性故事。至少对于此处研究的特定肽和去污剂系统,我们表明,在另外20个氨基酸的疏水螺旋段的第12位上有一个极性天冬酰胺残基会导致肽在SDS-PAGE凝胶上迁移,其表观分子量为是其真实分子量的两倍,表明存在二聚作用。但是,如果在SDS溶液中仔细检查,并使用Forster共振能量转移在聚丙烯酰胺凝胶本身中进行原位检查,则无法检测到相互作用。相反,我们显示出证据表明,肽和去污剂之间的差异相互作用驱动电泳迁移率的差异,而肽之间没有任何相互作用。这些结果强调需要将多种独立技术应用于膜蛋白折叠的研究,并且它们强调了研究脂质膜而不是去污剂中膜蛋白折叠和结构的有用性。

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