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Modulating alignment of membrane proteins in liquid-crystalline and oriented gel media by changing the size and charge of phospholipid bicelles

机译:通过改变磷脂双裂缝的尺寸和电荷来调节膜蛋白在液晶和取向凝胶培养基中的对准

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摘要

We demonstrate that alignment of a structured peptide or small protein solubilized in mixed phospholipid:detergent micelles or bicelles, when embedded in a compressed gel or liquid crystalline medium, can be altered by either changing the phospholipid aggregate shape, charge, or both together. For the hemagglutinin fusion peptide solubilized in bicelles, we show that bicelle shape and charge do not change its helical hairpin structure but impact its alignment relative to the alignment medium, both in charged compressed acrylamide gel and in liquid crystalline d (GpG). The method can be used to generate sets of residual dipolar couplings (RDCs) that correspond to orthogonal alignment tensors, and holds promise for high-resolution structural refinement and dynamic mapping of membrane proteins.
机译:我们证明,当嵌入压缩的凝胶或液晶介质中时,可通过改变磷脂聚集体的形状,电荷或同时改变二者来改变结构化肽或溶解在混合的磷脂:洗涤剂微团或双细胞中的小蛋白的比对。对于溶解在双细胞中的血凝素融合肽,我们显示,在带电压缩丙烯酰胺凝胶和液晶d(GpG)中,比塞勒的形状和电荷不会改变其螺旋发夹结构,而是会影响其相对于对齐介质的对齐方式。该方法可用于生成与正交比对张量相对应的残余偶极偶合(RDC)集,并有望实现高分辨率的膜结构精细化和膜蛋白的动态作图。

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