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Quantifying Microsecond Exchange in Large Protein Complexes with Accelerated Relaxation Dispersion Experiments in the Solid State

机译:用加速弛豫分散实验定量大蛋白质复合物中的微秒交换

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Solid state NMR is a powerful method to obtain information on the structure and dynamics of protein complexes that, due to solubility and size limitations, cannot be achieved by other methods. Here, we present an approach that allows the quantification of microsecond conformational exchange in large protein complexes by using a paramagnetic agent to accelerate sup15/supN Rsub1ρ/sub relaxation dispersion measurements and overcome sensitivity limitations. The method is validated on crystalline GB1 and then applied to a 300?kDa precipitated complex of GB1 with full length human immunoglobulin G (IgG). The addition of a paramagnetic agent increased the signal to noise ratio per time unit by a factor of 5, which allowed full relaxation dispersion curves to be recorded on a sample containing less than 50 μg of labelled material in 5 and 10 days on 850 and 700?MHz spectrometers, respectively. We discover a similar exchange process across the β-sheet in GB1 in crystals and in complex with IgG. However, the slow motion observed for a number of residues in the α-helix of crystalline GB1 is not detected in the complex.
机译:固态NMR是获取有关蛋白质复合物的结构和动态的信息的强大方法,由于溶解性和尺寸限制,不能通过其他方法实现。这里,我们提出一种方法,其通过使用顺磁性剂加速 15 1ρ弛豫分散测量并克服灵敏度限制,允许在大蛋白质复合物中定量微蛋白质复合物中的微秒构象交换。该方法在结晶GB1上验证,然后用全长的人免疫球蛋白G(IgG)施加至A> 300〜KDA沉淀的GB1沉淀的复合物。加入顺磁性剂对每次单位的信噪比增加了5系数5,允许在850和700的5至10天内达到含有少于50μg标记材料的样品上的全弛豫分散曲线。分别是MHz光谱仪。我们在晶体中的β-片材中发现类似的交换过程,并与IgG复合物。然而,在复合物中未检测到α-螺旋中α-螺旋中的许多残基观察到的慢动作。

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