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Paramagnetic shifts in solid-state NMR of proteins to elicit structural information

机译:蛋白质固态NMR中的顺磁位移引起结构信息

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摘要

The recent observation of pseudocontact shifts (pcs) in 13C high-resolution solid-state NMR of paramagnetic proteins opens the way to their application as structural restraints. Here, by investigating a microcrystalline sample of cobalt(II)-substituted matrix metalloproteinase 12 [CoMMP-12 (159 AA, 17.5 kDa)], it is shown that a combined strategy of protein labeling and dilution of the paramagnetic species (i.e., 13C-,15N-labeled CoMMP-12 diluted in unlabeled ZnMMP-12, and 13C-,15N-labeled ZnMMP-12 diluted in unlabeled CoMMP-12) allows one to easily separate the pcs contributions originated from the protein internal metal (intramolecular pcs) from those due to the metals in neighboring proteins in the crystal lattice (intermolecular pcs) and that both can be used for structural purposes. It is demonstrated that intramolecular pcs are significant structural restraints helpful in increasing both precision and accuracy of the structure, which is a need in solid-state structural biology nowadays. Furthermore, intermolecular pcs provide unique information on positions and orientations of neighboring protein molecules in the solid phase.
机译:最近观察到的顺磁性蛋白质的13C高分辨率固态NMR中的伪接触位移(pcs)为它们作为结构限制剂的应用开辟了道路。在这里,通过研究钴(II)取代的基质金属蛋白酶12 [CoMMP-12(159 AA,17.5 kDa)]的微晶样品,表明了蛋白质标记和顺磁性物质(即13C)稀释的组合策略-,在未标记的ZnMMP-12中稀释的15N标记的CoMMP-12和在未标记的CoMMP-12中稀释的13C-,15N标记的ZnMMP-12)可以轻松区分源自蛋白质内部金属的分子贡献(分子内的pcs)这是由于晶格中相邻蛋白质中的金属(分子间pcs)引起的,并且两者均可用于结构目的。事实证明,分子内pcs是重要的结构限制因素,有助于提高结构的精确度和准确性,这是当今固态结构生物学所需要的。此外,分子间的pc可提供有关固相中相邻蛋白质分子的位置和方向的独特信息。

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