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Solution NMR of Polypeptides Hyperpolarized by Dynamic Nuclear Polarization

机译:动态核极化超极化多肽的溶液NMR

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摘要

Hyperpolarization of nuclear spins through techniques such as dynamic nuclear polarization (DNP) can greatly increase the signal-to-noise ratio in NMR measurements, thus eliminating the need for signal averaging. This enables the study of many dynamic processes which would otherwise not be amenable to study by NMR spectroscopy. A report of solid- to liquid-state DNP of a short peptide, bacitracin A, as well as of a full-length protein, L23, is presented here. The polypeptides are hyperpolarized at low temperature and dissolved for NMR signal acquisition in the liquid state in mixtures of organic solvent and water. Signal enhancements of 300-2000 are obtained in partially deuterated polypeptide when hyperpolarized on ~(13)C and of 30-180 when hyperpolarized on ~(1)H. A simulated spectrum is used to identify different resonances in the hyperpolarized ~(13)C spectra, and the relation between observed signal enhancement for various groups in the protein and relaxation parameters measured from the hyperpolarized samples is discussed. Thus far, solid- to liquid-state DNP has been used in conjunction with small molecules. The results presented here, however, demonstrate the feasibility of hyperpolarizing larger proteins, with potential applications toward the study of protein folding or macromolecular interactions.
机译:通过诸如动态核极化(DNP)之类的技术使核自旋超极化可以大大提高NMR测量中的信噪比,从而消除了对信号平均的需求。这使得能够研究许多动态过程,否则将无法通过NMR光谱研究。此处介绍了短肽杆菌肽A以及全长蛋白L23的固态至液态DNP的报告。多肽在低温下超极化,并溶解在液态下的有机溶剂和水的混合物中以进行NMR信号采集。在〜(13)C上超极化时,部分氘代多肽获得300-2000的信号增强;在〜(1)H上超极化时,获得30-180的信号增强。模拟光谱用于识别超极化〜(13)C光谱中的不同共振,并讨论了蛋白质中各个基团的观察信号增强与从超极化样品中测得的弛豫参数之间的关系。迄今为止,已将固态至液态DNP与小分子结合使用。但是,这里给出的结果证明了超极化较大蛋白质的可行性,并可能用于蛋白质折叠或大分子相互作用的研究。

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