Ravera Enrico, Carlon Azzurra, Fragai Marco, Parigi Giacomo, Luchinat Claudio
Magnetic Resonance Center (CERM) and Interuniversity Consortium for Magnetic Resonance of Metallo Proteins (CIRMMP), Via L. Sacconi 6, 50019 Sesto Fiorentino, Italy.
Department of Chemistry 'Ugo Schiff', University of Florence, Via della Lastruccia 3, 50019 Sesto Fiorentino, Italy.
Emerg Top Life Sci. 2018 Apr 20;2(1):19-28. doi: 10.1042/ETLS20170084.
NMR (nuclear magnetic resonance) investigation through the exploitation of paramagnetic effects is passing from an approach limited to few specialists in the field to a generally applicable method that must be considered, especially for the characterization of systems hardly affordable with other techniques. This is mostly due to the fact that paramagnetic data are long range in nature, thus providing information for the structural and dynamic characterization of complex biomolecular architectures in their native environment. On the other hand, this information usually needs to be complemented by data from other sources. Integration of paramagnetic NMR with other techniques, and the development of protocols for a joint analysis of all available data, is fundamental for achieving a comprehensive characterization of complex biological systems. We describe here a few examples of the new possibilities offered by paramagnetic data used in integrated structural approaches.
通过利用顺磁效应进行的核磁共振(NMR)研究正从一种仅限于该领域少数专家的方法,转变为一种普遍适用的方法,尤其对于其他技术难以处理的系统的表征而言,这种方法必须加以考虑。这主要是因为顺磁数据本质上具有长程性,从而为复杂生物分子结构在其天然环境中的结构和动力学表征提供信息。另一方面,这些信息通常需要其他来源的数据进行补充。将顺磁NMR与其他技术相结合,并开发用于联合分析所有可用数据的方案,对于实现复杂生物系统的全面表征至关重要。我们在此描述一些在综合结构方法中使用顺磁数据所带来的新可能性的示例。