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Proton-detected scalar coupling based assignment strategies in MAS solid-state NMR spectroscopy applied to perdeuterated proteins.

机译:基于质子检测的基于标量耦合的mas固态核磁共振光谱中的分配策略应用于过氘化蛋白质。

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摘要

Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations among heteronuclei. This strategy is based on well dispersed resonances in the 15N dimension. In many complex cases like membrane proteins or amyloid fibrils, an additional frequency dimension is desirable in order to spread the amide resonances. We show here that proton detected HNCO, HNCA, and HNCACB type experiments can successfully be implemented in the solid-state. Coherences are sufficiently long lived to allow pulse schemes of a duration greater than 70 ms before incrementation of the first indirect dimension. The achieved resolution is comparable to the resolution obtained in solution-state NMR experiments. We demonstrate the experiments using a triply labeled sample of the SH3 domain of chicken α-spectrin, which was re-crystallized in H2O/D2O using a ratio of 1/9. We employ paramagnetic relaxation enhancement (PRE) using EDTA chelated CuII to enable rapid data acquisition.
机译:迄今为止,MAS(魔角旋转)固态NMR中蛋白质的分配取决于异核之间的相关性。该策略基于在15N维度上良好分散的共振。在许多复杂的情况下,例如膜蛋白或淀粉样蛋白原纤维,为了扩展酰胺共振,需要一个附加的频率范围。我们在这里表明,质子检测到的HNCO,HNCA和HNCACB类型的实验可以成功地在固态中实施。相干的寿命足够长,以允许在增加第一间接维数之前进行大于70 ms持续时间的脉冲方案。达到的分辨率与溶液态NMR实验获得的分辨率相当。我们展示了使用鸡α-血影蛋白的SH3域的三重标记样品进行的实验,该样品在H2O / D2O中以1/9的比例重结晶。我们采用EDTA螯合的CuII进行顺磁弛豫增强(PRE),以实现快速数据采集。

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