McCullough Brandon S, Barrios Amy M
Department of Medicinal Chemistry , University of Utah , Salt Lake City , Utah 84112 , United States.
Biochemistry. 2018 May 8;57(18):2584-2589. doi: 10.1021/acs.biochem.8b00278. Epub 2018 Apr 23.
Although the importance of protein histidine phosphorylation in mammals has been a subject of increasing interest, few chemical probes are available for monitoring and manipulating PHP activity. Here, we present an optimized and validated protocol for assaying the activity of PHPT1 using the fluorogenic substrate DiFMUP. The kinetic parameters of our optimized assay are significantly improved as compared with other PHPT1 assays in the literature, with a k of 0.39 ± 0.02 s, a K of 220 ± 30 μM, and a k/ K of 1800 ± 200 M s. In addition, the assay is significantly more sensitive as a result of using a fluorescent probe, requiring only 109 nM enzyme as compared with 2.4 μM as required by previously published assays. In the process of assay optimization, we discovered that PHPT1 is sensitive to a reducing environment and inhibited by transition-metal ions, with one apparent Cu(II) binding site with IC value of 500 ± 20 μM and two apparent Zn(II) binding sites with IC values of 25 ± 1 and 490 ± 20 μM.
尽管蛋白质组氨酸磷酸化在哺乳动物中的重要性已越来越受到关注,但用于监测和操纵PHP活性的化学探针却很少。在此,我们提出了一种使用荧光底物DiFMUP测定PHPT1活性的优化且经过验证的方案。与文献中其他PHPT1测定方法相比,我们优化后的测定方法的动力学参数有显著改善,k为0.39±0.02 s,K为220±30 μM,k/K为1800±200 M⁻¹ s⁻¹。此外,由于使用了荧光探针,该测定方法的灵敏度显著提高,仅需109 nM酶,而之前发表的测定方法则需要2.4 μM。在测定优化过程中,我们发现PHPT1对还原环境敏感且受过渡金属离子抑制,有一个表观Cu(II)结合位点,IC值为500±20 μM,还有两个表观Zn(II)结合位点,IC值分别为25±1 μM和490±20 μM。