Department of Biochemistry, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
Doctoral School of Exact and Natural Sciences, Jagiellonian University, Krakow, Poland; Malopolska Centre of Biotechnology, Jagiellonian University, Krakow, Poland.
Cell Rep. 2024 Oct 22;43(10):114831. doi: 10.1016/j.celrep.2024.114831. Epub 2024 Oct 10.
This study explores a non-kinase effect of extracellular regulated kinases 1/2 (ERK1/2) on the interaction between deoxyhypusine synthase (DHPS) and its substrate, eukaryotic translation initiation factor 5A (eIF5A). We report that Raf/MEK/ERK activation decreases the DHPS-ERK1/2 interaction while increasing DHPS-eIF5A association in cells. We determined the cryoelectron microscopy (cryo-EM) structure of the DHPS-ERK2 complex at 3.5 Å to show that ERK2 hinders substrate entrance to the DHPS active site, subsequently inhibiting deoxyhypusination in vitro. In cells, impairing the ERK2 activation loop, but not the catalytic site, prolongs the DHPS-ERK2 interaction irrespective of Raf/MEK signaling. The ERK2 Ser-Pro-Ser motif, but not the common docking or F-site recognition sites, also regulates this complex. These data suggest that ERK1/2 dynamically regulate the DHPS-eIF5A interaction in response to Raf/MEK activity, regardless of its kinase function. In contrast, ERK1/2 kinase activity is necessary to regulate the expression of DHPS and eIF5A. These findings highlight an ERK1/2-mediated dual kinase-dependent and -independent regulation of deoxyhypusination.
这项研究探讨了细胞外调节激酶 1/2(ERK1/2)对脱氧鸟苷酸合酶(DHPS)与其底物真核翻译起始因子 5A(eIF5A)之间相互作用的非激酶效应。我们报告说,Raf/MEK/ERK 激活会降低 DHPS-ERK1/2 相互作用,同时增加细胞中 DHPS-eIF5A 缔合。我们通过冷冻电子显微镜(cryo-EM)确定了 DHPS-ERK2 复合物在 3.5Å 的结构,表明 ERK2 阻碍底物进入 DHPS 活性部位,从而在体外抑制去氧鸟苷酸化。在细胞中,尽管 Raf/MEK 信号通路不受影响,但破坏 ERK2 激活环而非催化部位会延长 DHPS-ERK2 相互作用。ERK2 的 Ser-Pro-Ser 基序而非常见的对接或 F 位点识别位点也调节这种复合物。这些数据表明,ERK1/2 可动态调节 DHPS-eIF5A 相互作用以响应 Raf/MEK 活性,而不依赖其激酶功能。相比之下,ERK1/2 激酶活性对于调节 DHPS 和 eIF5A 的表达是必需的。这些发现强调了 ERK1/2 介导的脱氧鸟苷酸化的双重激酶依赖和非依赖调节。