Department of Chemistry, School of Chemistry and Materials Science, University of Science and Technology of China, Hefei, Anhui, 230026, People's Republic of China.
J Am Soc Mass Spectrom. 2017 Dec;28(12):2658-2664. doi: 10.1007/s13361-017-1789-6. Epub 2017 Sep 8.
Specific protein-metal interactions (PMIs) fulfill essential functions in cells and organic bodies, and activation of these functions in vivo are mostly modulated by the complex environmental factors, including pH value, small biomolecules, and salts. Specifically, the role of salts in promoting specific PMIs and their competition among various metals has remained untapped mainly due to the difficulty to distinguish nonspecific PMIs from specific PMIs by classic spectroscopic techniques. Herein, we report Hofmeister salts differentially promote the specific PMIs by combining nanoelectrospray ionization mass spectrometry and spectroscopic techniques (fluorescence measurement and circular dichroism). Furthermore, to explore the influence of salts in competitive binding between metalloproteins and various metals, we designed a series of competitive experiments and applied to a well-defined model system, the competitive binding of zinc (II) and arsenic (III) to holo-promyelocytic leukemia protein (PML). These experiments not only provided new insights at the molecular scale as complementary to previous NMR and spectroscopic results, but also deduced the relative binding ability between zinc finger proteins and metals at the molecular scale, which avoids the mass spectrometric titration-based determination of binding constants that is frequently affected and often degraded by variable solution conditions including salt contents. Graphical Abstract ᅟ.
特定的蛋白质-金属相互作用(PMIs)在细胞和有机体内发挥着重要的功能,而这些功能在体内的激活主要是由复杂的环境因素调节的,包括 pH 值、小分子生物和盐。具体来说,由于经典光谱技术难以区分特异性和非特异性 PMIs,盐在促进特异性 PMIs 及其与各种金属之间的竞争中的作用在很大程度上尚未被开发。在这里,我们报告了霍夫迈斯特盐通过结合纳喷雾电离质谱和光谱技术(荧光测量和圆二色性)来差异促进特异性 PMIs。此外,为了探索盐在金属蛋白和各种金属之间竞争结合中的影响,我们设计了一系列竞争性实验,并应用于一个明确的模型系统,即锌(II)和砷(III)与全反式早幼粒细胞白血病蛋白(PML)的竞争结合。这些实验不仅在分子尺度上提供了新的见解,补充了以前的 NMR 和光谱结果,而且还推断了锌指蛋白与金属之间在分子尺度上的相对结合能力,这避免了基于质谱滴定的结合常数的测定,该测定经常受到包括盐含量在内的可变溶液条件的影响,并且经常受到降解。