Segal Cancer Proteomics Centre, Lady Davis Institute, Jewish General Hospital, McGill University, Montreal, Quebec H3T 1E2, Canada.
Center for Computational and Data-Intensive Science and Engineering, Skolkovo Institute of Science and Technology, Moscow 121205, Russia.
Chem Rev. 2022 Apr 27;122(8):7488-7499. doi: 10.1021/acs.chemrev.1c00302. Epub 2021 Dec 30.
The advent of soft-ionization mass spectrometry for biomolecules has opened up new possibilities for the structural analysis of proteins. Combining protein chemistry methods with modern mass spectrometry has led to the emergence of the distinct field of structural proteomics. Multiple protein chemistry approaches, such as surface modification, limited proteolysis, hydrogen-deuterium exchange, and cross-linking, provide diverse and often orthogonal structural information on the protein systems studied. Combining experimental data from these various structural proteomics techniques provides a more comprehensive examination of the protein structure and increases confidence in the ultimate findings. Here, we review various types of experimental data from structural proteomics approaches with an emphasis on the use of multiple complementary mass spectrometric approaches to provide experimental constraints for the solving of protein structures.
生物分子的软电离质谱的出现为蛋白质的结构分析开辟了新的可能性。将蛋白质化学方法与现代质谱相结合,产生了结构蛋白质组学这一独特领域。多种蛋白质化学方法,如表面修饰、有限水解、氢氘交换和交联,为所研究的蛋白质系统提供了多样化且常常是互补的结构信息。结合这些不同的结构蛋白质组学技术的实验数据,可以更全面地检查蛋白质结构,并提高最终结果的可信度。在这里,我们综述了结构蛋白质组学方法的各种类型的实验数据,重点介绍了使用多种互补的质谱方法为蛋白质结构解析提供实验约束的内容。