Etori Haruka, Asoshina Riko, Obita Takayuki, Okumura Fumihiko
Department of Food and Health Sciences, International College of Arts and Sciences, Fukuoka Women's University, Fukuoka, 813-8582, Japan.
Faculty of Pharmaceutical Sciences, University of Toyama, Toyama, Japan.
Sci Rep. 2025 May 23;15(1):17913. doi: 10.1038/s41598-025-01425-0.
The expression of ubiquitin-like molecule interferon-stimulated gene 15 kDa (ISG15) and its post-translational modification (ISGylation) are significantly activated by interferons or pathogen infections, highlighting their roles in innate immune responses. Over 1100 proteins have been identified as ISGylated. ISG15 is removed from substrates by interferon-induced ubiquitin-specific peptidase 18 (USP18) or severe acute respiratory syndrome coronavirus 2-derived papain-like protease. High ISGylation levels may help prevent the spread of coronavirus disease 2019 (COVID-19). Polyamines (spermidine and spermine) exhibit anti-inflammatory, antioxidant, and mitochondrial functions. However, the relationship between nutrients and ISGylation remains unclear. This study assessed the effects of spermine and spermidine on ISGylation. MCF10A and A549 cells were treated with interferon-alpha, spermine, or spermidine, and the expression levels of various proteins and ISGylation were measured. Spermine and spermidine dose-dependently reduced ISGylation. Additionally, spermidine directly interacted with ISG15 and USP18, enhancing their interaction and potentially reducing ISGylation. Therefore, spermidine may prevent ISGylation-related immune responses.
泛素样分子干扰素刺激基因15千道尔顿(ISG15)的表达及其翻译后修饰(ISGylation)可被干扰素或病原体感染显著激活,突显了它们在先天免疫反应中的作用。已鉴定出超过1100种蛋白质可发生ISGylation修饰。ISG15可被干扰素诱导的泛素特异性肽酶18(USP18)或严重急性呼吸综合征冠状病毒2衍生的木瓜样蛋白酶从底物上移除。高水平的ISGylation修饰可能有助于预防2019冠状病毒病(COVID-19)的传播。多胺(亚精胺和精胺)具有抗炎、抗氧化和线粒体功能。然而,营养素与ISGylation修饰之间的关系仍不清楚。本研究评估了精胺和亚精胺对ISGylation修饰的影响。用干扰素-α、精胺或亚精胺处理MCF10A和A549细胞,并检测各种蛋白质的表达水平和ISGylation修饰情况。精胺和亚精胺以剂量依赖的方式降低ISGylation修饰水平。此外,亚精胺直接与ISG15和USP18相互作用,增强它们之间的相互作用,并可能降低ISGylation修饰水平。因此,亚精胺可能会阻止与ISGylation修饰相关的免疫反应。