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Detergent Titration as an Efficient Method for NMR Resonance Assignments of Membrane Proteins in Lipid-Bilayer Nanodiscs

机译:洗涤剂滴定作为脂质双层纳米蛋白膜蛋白的NMR共振分配的有效方法

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摘要

Lipid bilayer nanodiscs are an attractive tool to study membrane proteins in a detergent-free lipid-bilayer environment. In the case of NMR studies, a sequence-specific resonance assignment is required in order to gain structural and functional insights with atomic resolution. Although NMR backbone assignments of membrane proteins in detergents are available, they are largely absent for membrane proteins in nanodiscs due to unfavorable relaxation properties of the slowly tumbling membrane protein-nanodisc complex. The necessary residuespecific reassignment of resonances in nanodiscs is therefore extremely time and sample consuming and represents the fundamental bottleneck in the application of nanodiscs for NMR studies. Here we present an elegant and fast solution to the problem. We show that a resonance assignment in detergent micelles can be transferred to a spectrum recorded in nanodiscs via detergent titration. The procedure requires that lipid-detergent exchange kinetics are in the fast exchange regime in order to follow linear and nonlinear peak shift trajectories with increasing detergent concentration. We demonstrate the feasibility of the approach on the 148-residue membrane protein OmpX. The titration method is then applied to VDAC, a 19-stranded beta-barrel with 283 residues, for which 67% of the detergent assignment could be transferred to the nanodisc spectrum. We furthermore show that this method also works for the largest currently assigned membrane protein, BamA with 398 residues. The method is applicable for backbone amide and side chain methyl groups and represents a time and cost-effective assignment method, for example, to investigate membrane protein allostery and drug binding in a more natural and detergent-free lipid bilayer.
机译:脂质化双层纳米尼斯是一种有吸引力的工具,用于研究一种不含洗涤剂脂质双层环境中的膜蛋白。在NMR研究的情况下,需要一种序列特异性的共振分配,以获得具有原子分辨率的结构和功能见解。虽然可获得洗涤剂中膜蛋白的NMR骨干骨干蛋白,但由于缓慢翻滚膜蛋白 - 纳米蛋白综合体的不利弛豫特性,它们在很大程度上不存在纳米膜中的膜蛋白。因此,纳米DISC中共振的必要残留物重新分配是极为时期和样品消耗,并代表纳米乳头核苷酸研究的基本瓶颈。在这里,我们为此问题提供了优雅和快速的解决方案。我们表明,通过洗涤剂滴定,可以将洗涤剂胶束中的共振分配转移到纳米芯片中记录的光谱。该方法要求脂质 - 洗涤剂交换动力学处于快速汇率制度,以便遵循随着洗涤剂浓度的增加的线性和非线性峰值移位轨迹。我们证明了148-残基膜蛋白OMPX的方法的可行性。然后将滴定方法施加到Vdac,19链β筒,其具有283个残基,其中67%的洗涤剂分配可以转移到纳米型谱。我们还表明,该方法还适用于最大目前分配的膜蛋白,BAMA具有398个残留物。该方法适用于骨干酰胺和侧链甲基,并且代表一种时间和经济高效的分配方法,例如,研究更自然和无洗涤剂的脂质双层中的膜蛋白仿生和药物结合。

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