Department of Chemistry, Gwangju Institute of Science and Technology, Gwangju, 61005, Republic of Korea.
Ochang Center, Korea Basic Science Institute, Chungcheongbuk-do, 28119, Republic of Korea.
Commun Biol. 2024 Nov 1;7(1):1425. doi: 10.1038/s42003-024-07133-1.
Forkhead box O4 (FOXO4), a human transcription factor, recognizes target DNA through its forkhead domain (FHD) while maintaining comparable binding affinity to non-target DNA. The conserved region 3 (CR3), a transactivation domain, modulates DNA binding kinetics to FHD and contributes to target DNA selection, but the underlying mechanism of this selection remains elusive. Using paramagnetic relaxation enhancement analysis, we observed a minor state of CR3 close to FHD in the presence of non-target DNA, a state absent when FHD interacts with target DNA. This minor state suggests that CR3 effectively masks the non-target DNA-binding interface on FHD. The interaction weakens significantly under high salt concentration, implying that CR3 or high salt concentrations can modulate electrostatic interactions with non-target DNA. Our N relaxation measurements revealed FHD's flexibility with non-target DNA and increased rigidity with target DNA binding. Our findings offer insights into the role of FOXO4 as a transcription initiator.
叉头框蛋白 O4(FOXO4),一种人类转录因子,通过其叉头结构域(FHD)识别靶 DNA,同时保持对非靶 DNA 的相当结合亲和力。转录激活结构域 3(CR3)调节与 FHD 的 DNA 结合动力学,并有助于靶 DNA 的选择,但这种选择的潜在机制仍然难以捉摸。使用顺磁弛豫增强分析,我们观察到在存在非靶 DNA 时,CR3 接近 FHD 的次要状态,而当 FHD 与靶 DNA 相互作用时,该状态不存在。这种次要状态表明 CR3 有效地掩盖了 FHD 上的非靶 DNA 结合界面。在高盐浓度下,这种相互作用显著减弱,这意味着 CR3 或高盐浓度可以调节与非靶 DNA 的静电相互作用。我们的 N 弛豫测量揭示了 FHD 与非靶 DNA 的灵活性以及与靶 DNA 结合时的刚性增加。我们的研究结果为 FOXO4 作为转录起始因子的作用提供了深入的了解。