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Self-assembling Peptide Detergent A6D Directly Associates with Bovine Rhodopsin and Forms Lipid-like Vesicles

机译:自组装肽洗涤剂A6D直接与牛罗杜蛋白蛋白和形成脂质样囊泡

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Membrane protein study critically depends on detergents, which are amphilhilic molecules containing a hydrophilic "head" and a hydrophobic "tail" to mimic biological lipid bilayers to stabilize membrane proteins. However, detergents are not fully equivalent to lipid bilayers and in fact they only partly mimic lipid bilayers function. Consequently, membrane proteins in detergent solution are more or less denatured because detergents can not effectively stabilize membrane protein structures. Therefore, it is urgent to develop new types of detergents for more effectively stabilizing membrane proteins. Previously, we have reported a new type of self-assembly peptide detergents containing a hydrophilic head composed of either a negatively charged aspartic acid or a positively charged lysine and a tail of hydrophobic amino acids of six connective alanines. This new peptide detergent has been shown to be more effective for protecting membrane protein PS I structure than that the conventional detergent does. However, what type of physical structures peptide detergent can form is unclear yet. Here we presented our AFM and DSL analysis of the peptide detergent A6D, which not only form mixed micelles with n-Octyl-beta-D-Glucoside (OG) to solubilize membrane protein rhodopsin, but also can mimic lipid bilayers to keep rhodopsin in lipid-like vesicles for its structure preservation.
机译:膜蛋白质研究重视依赖于洗涤剂,其是含有亲水性“头部”和疏水性“尾”的两栖分子,以模拟生物脂质化双层稳定膜蛋白。然而,洗涤剂没有完全等同于脂质双层,实际上它们仅部分模仿脂质双层功能。因此,洗涤剂溶液中的膜蛋白或多或少变性,因为洗涤剂不能有效地稳定膜蛋白结构。因此,迫切需要为更有效的稳定膜蛋白开发新型洗涤剂。以前,我们报告了一种新型的自组装肽洗涤剂,其含有由带负电荷的天冬氨酸或带正电荷的赖氨酸和六个连接丙氨酸的疏水性氨基酸的尾部组成的亲水头。已经显示出这种新的肽洗涤剂对保护膜蛋白PS I结构更有效,而不是常规洗涤剂。然而,尚不清楚什么类型的物理结构肽洗涤剂。在这里,我们提出了对肽洗涤剂A6D的AFM和DSL分析,其不仅与N-OCTYL-BETA-D-葡糖苷(OG)形成混合胶束以溶解膜蛋白杂皮蛋白,而且可以模仿脂质双层以保持紫红素中的脂质用于其结构保存的囊泡。

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