Department of Biochemistry, Wake Forest School of Medicine, Winston-Salem, NC 27157, USA; Center for Molecular Signaling, Wake Forest University, USA; Center for Redox Biology and Medicine, Wake Forest School of Medicine, USA.
Department of Biochemistry, Wake Forest School of Medicine, Winston-Salem, NC 27157, USA; Center for Redox Biology and Medicine, Wake Forest School of Medicine, USA.
Free Radic Biol Med. 2017 Nov;112:534-543. doi: 10.1016/j.freeradbiomed.2017.08.018. Epub 2017 Aug 24.
ERK-dependent signaling is key to many pathways through which extracellular signals are transduced into cell-fate decisions. One conundrum is the way in which disparate signals induce specific responses through a common, ERK-dependent kinase cascade. While studies have revealed intricate ways of controlling ERK signaling through spatiotemporal localization and phosphorylation dynamics, additional modes of ERK regulation undoubtedly remain to be discovered. We hypothesized that fine-tuning of ERK signaling could occur by cysteine oxidation. We report that ERK is actively and directly oxidized by signal-generated HO during proliferative signaling, and that ERK oxidation occurs downstream of a variety of receptor classes tested in four cell lines. Furthermore, within the tested cell lines and proliferative signals, we observed that both activation loop-phosphorylated and non-phosphorylated ERK undergo sulfenylation in cells and that dynamics of ERK sulfenylation is dependent on the cell growth conditions prior to stimulation. We also tested the effect of endogenous ERK oxidation on kinase activity and report that phosphotransfer reactions are reversibly inhibited by oxidation by as much as 80-90%, underscoring the importance of considering this additional modification when assessing ERK activation in response to extracellular signals.
ERK 依赖性信号转导对于许多将细胞外信号转导为细胞命运决定的途径至关重要。一个难题是不同的信号如何通过共同的 ERK 依赖性激酶级联诱导特定的反应。虽然研究已经揭示了通过时空定位和磷酸化动力学来精细控制 ERK 信号的复杂方式,但毫无疑问,ERK 调节的其他方式仍然有待发现。我们假设 ERK 信号的精细调节可能通过半胱氨酸氧化发生。我们报告说,在增殖信号中,信号产生的 HO 会主动且直接氧化 ERK,并且在四种细胞系中测试的各种受体类别中,ERK 氧化发生在下游。此外,在测试的细胞系和增殖信号中,我们观察到细胞中活性环磷酸化和非磷酸化的 ERK 都发生亚磺酰化,并且 ERK 亚磺酰化的动力学取决于刺激前细胞的生长条件。我们还测试了内源性 ERK 氧化对激酶活性的影响,并报告说磷酸转移反应可被氧化可逆地抑制多达 80-90%,这突出表明在评估细胞外信号对 ERK 激活的反应时,考虑到这种额外的修饰非常重要。