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A diffusion NMR method for the prediction of the weight-average molecular weight of globular proteins in aqueous media of different viscosities

机译:一种扩散NMR方法,用于预测不同粘度水介质中球蛋白的重均分子量

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摘要

We have introduced for the first time, a non-viscosity dependent universal calibration curve (UCC) for the successful prediction of the weight-average molecular weights of globular proteins in the range of 8.5-66.2 kDa with no dependence on the solvent viscosity. Plots of log(Dh) versus log M-w showed excellent linearity (R-2 0.99) within four different methods (LMS, TRAIn, NNLS and ITAMeD). To demonstrate the applicability of this new UCC curve, we have proposed as a proof of concept the determination of the M-w of myoglobin from an equine heart in deuterated water of four different viscosity values. The corresponding (D-eta) values were fitted to the UCC to calculate their corresponding weight-average M-w that was in all the cases centered at 17 321.2 Da, with differences in the mass below 5.7% with respect to the commercial value.
机译:我们首次引入了非粘度依赖性普遍校准曲线(UCC),用于成功预测出球状蛋白的重量平均分子量在8.5-66.2kDa的范围内,没有依赖于溶剂粘度。 Log(DH)的图与LOG M-W在四种不同的方法中显示出优异的线性度(R-2和0.99)(LMS,火车,NNL和令人争议)。 为了证明这种新的UCC曲线的适用性,我们提出了一种概念证明,从四种不同粘度值的氘核中测定肌球蛋白的M-W. 将相应的(D-ETA)值安装在UCC上以计算其在所有案例中以17 321.2Da为中心的相应的重均线M-W,其质量相对于商业价值低于5.7%。

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