Department of Pharmacology and Therapeutics, Institute of Systems, Molecular and Integrative Biology, University of Liverpool, Liverpool L69 3GE, UK.
Cardiovascular Research Group, School of Pharmacy and Medical Sciences, University of Bradford, Bradford BD7 1DP, UK.
Cells. 2023 Mar 22;12(6):967. doi: 10.3390/cells12060967.
Extracellular-signal-regulated kinase 5 (ERK5) is critical for normal cardiovascular development. Previous studies have defined a canonical pathway for ERK5 activation, showing that ligand stimulation leads to MEK5 activation resulting in dual phosphorylation of ERK5 on Thr218/Tyr220 residues within the activation loop. ERK5 then undergoes a conformational change, facilitating phosphorylation on residues in the C-terminal domain and translocation to the nucleus where it regulates MEF2 transcriptional activity. Our previous research into the importance of ERK5 in endothelial cells highlighted its role in VEGF-mediated tubular morphogenesis and cell survival, suggesting that ERK5 played a unique role in endothelial cells. Our current data show that in contrast to EGF-stimulated HeLa cells, VEGF-mediated ERK5 activation in human dermal microvascular endothelial cells (HDMECs) does not result in C-terminal phosphorylation of ERK5 and translocation to the nucleus, but instead to a more plasma membrane/cytoplasmic localisation. Furthermore, the use of small-molecule inhibitors to MEK5 and ERK5 shows that instead of regulating MEF2 activity, VEGF-mediated ERK5 is important for regulating AKT activity. Our data define a novel pathway for ERK5 activation in endothelial cells leading to cell survival.
细胞外信号调节激酶 5(ERK5)对于正常心血管发育至关重要。先前的研究已经确定了 ERK5 激活的经典途径,表明配体刺激导致 MEK5 激活,从而导致 ERK5 在激活环中的 Thr218/Tyr220 残基上发生双磷酸化。ERK5 然后发生构象变化,促进 C 末端结构域中的残基磷酸化,并易位到细胞核,在细胞核中它调节 MEF2 转录活性。我们之前关于 ERK5 在血管内皮细胞中重要性的研究强调了它在 VEGF 介导的管状形态发生和细胞存活中的作用,表明 ERK5 在血管内皮细胞中发挥独特的作用。我们目前的数据表明,与 EGF 刺激的 HeLa 细胞相反,VEGF 介导的人真皮微血管内皮细胞(HDMEC)中的 ERK5 激活不会导致 ERK5 的 C 末端磷酸化和易位到细胞核,而是导致更靠近质膜/细胞质的定位。此外,使用小分子抑制剂 MEK5 和 ERK5 表明,VEGF 介导的 ERK5 不是调节 MEF2 活性,而是调节 AKT 活性的重要因素。我们的数据定义了内皮细胞中 ERK5 激活的新途径,导致细胞存活。