Liu Xiyuan, Ni Zhaoze, Zhang Jing, Lin Xiaoyan, Wu Chenxin, Wu Yuyang, Dong Lingqin, Zhang Zongduan, Chi Zai-Long
State Key Laboratory of Eye Health, Eye Hospital of Wenzhou Medical University, Wenzhou 325035, China.
Int J Mol Sci. 2025 Apr 15;26(8):3735. doi: 10.3390/ijms26083735.
The retinal pigment epithelium (RPE) serves as a critical guardian of subretinal homeostasis, with its dysfunction implicated in major retinal pathologies, including age-related macular degeneration (AMD) and retinitis pigmentosa. While cellular senescence has emerged as a key driver of RPE degeneration, the molecular mechanisms underlying this process remain incompletely defined. Emerging evidence implicates dual-specificity phosphatase 4 (DUSP4) in cellular stress responses through its antioxidant and anti-inflammatory capacities, yet its role in RPE pathophysiology remains unexplored. Our study reveals a compensatory increase in DUSP4 expression during AMD-associated RPE senescence. To functionally characterize this observation, we knocked down DUSP4 in the RPE of mice via subretinal injection of AAV-shDUSP4. In a sodium iodate-induced dry AMD model, mice with DUSP4 knockdown presented more severe visual impairment than control mice did. To further investigate the molecular mechanism, stable DUSP4-knockout cell lines were constructed via CRISPR/Cas9 technology. The high expression of senescence markers in the DUSP4-knockout cell lines was reversed by DUSP4 overexpression. Furthermore, DUSP4 coordinates the modulation of cell cycle, stress response, and pro-inflammatory signaling by inhibiting the p53, p38, and NF-kB pathways. These findings establish DUSP4 as a multi-functional regulator of RPE senescence. Our work not only elucidates a novel DUSP4-dependent mechanism in AMD pathogenesis but also highlights its therapeutic potential for preserving RPE function in AMD.
视网膜色素上皮(RPE)是视网膜下稳态的关键守护者,其功能障碍与包括年龄相关性黄斑变性(AMD)和色素性视网膜炎在内的主要视网膜病变有关。虽然细胞衰老已成为RPE退化的关键驱动因素,但这一过程背后的分子机制仍未完全明确。新出现的证据表明双特异性磷酸酶4(DUSP4)通过其抗氧化和抗炎能力参与细胞应激反应,但其在RPE病理生理学中的作用仍未得到探索。我们的研究揭示了在AMD相关的RPE衰老过程中DUSP4表达的代偿性增加。为了从功能上表征这一观察结果,我们通过视网膜下注射AAV-shDUSP4在小鼠RPE中敲低DUSP4。在碘酸钠诱导的干性AMD模型中,DUSP4敲低的小鼠比对照小鼠表现出更严重的视力损害。为了进一步研究分子机制,通过CRISPR/Cas9技术构建了稳定的DUSP4敲除细胞系。DUSP4过表达逆转了DUSP4敲除细胞系中衰老标志物的高表达。此外,DUSP4通过抑制p53、p38和NF-κB途径来协调细胞周期、应激反应和促炎信号的调节。这些发现确立了DUSP4作为RPE衰老的多功能调节因子。我们的工作不仅阐明了AMD发病机制中一种新的依赖DUSP4的机制,还突出了其在保护AMD中RPE功能方面的治疗潜力。