Berry Luke, Patterson Angela, Pence Natasha, Peters John W, Bothner Brian
Department of Chemistry and Biochemistry, Montana State University, Bozeman, USA.
Institute of Biological Chemistry, Washington State University, Pullman, USA.
Bio Protoc. 2018 Mar 20;8(6). doi: 10.21769/BioProtoc.2769.
The protocol detailed here describes a way to perform hydrogen deuterium exchange coupled to mass spectrometry (HDX-MS) on oxygen sensitive proteins. HDX-MS is a powerful tool for studying the protein structure-function relationship. Applying this technique to anaerobic proteins provides insight into the mechanism of proteins that perform oxygen sensitive chemistry. A problem when using HDX-MS to study anaerobic proteins is that there are many parts that require constant movement into and out of an anaerobic chamber. This can affect the seal, increasing the likelihood of oxygen exposure. Exposure to oxygen causes the cofactors bound to these proteins, a common example being FeS clusters, to no longer interact with the amino acid residues responsible for coordinating the FeS clusters, causing loss of the clusters and irreversible inactivation of the protein. To counteract this, a double vial system was developed that allows the preparation of solutions and reaction mixtures anaerobically, but also allows these solutions to be moved to an aerobic environment while shielding the solutions from oxygen. Additionally, movement isn't limited like it is in an anaerobic chamber, ensuring more consistent data, and fewer errors during the course of the reaction.
此处详述的方案描述了一种对氧敏感蛋白进行氢氘交换结合质谱分析(HDX-MS)的方法。HDX-MS是研究蛋白质结构与功能关系的强大工具。将该技术应用于厌氧蛋白可深入了解执行氧敏感化学反应的蛋白质的机制。使用HDX-MS研究厌氧蛋白时存在的一个问题是,有许多步骤需要不断进出厌氧箱。这可能会影响密封,增加氧气暴露的可能性。暴露于氧气会导致与这些蛋白结合的辅因子(常见例子是FeS簇)不再与负责配位FeS簇的氨基酸残基相互作用,导致簇丢失和蛋白质不可逆失活。为解决此问题,开发了一种双瓶系统,该系统允许在无氧条件下制备溶液和反应混合物,但也允许这些溶液转移到有氧环境中,同时使溶液免受氧气影响。此外,移动不像在厌氧箱中那样受限,确保了更一致的数据以及反应过程中更少的误差。