Yan Xiaowei, Pan Yitong, Li Peiying, Zhu Li, Yu Jianhai, Shen Chenguang, Zhang Bao, Zhao Wei
BSL-3 Laboratory (Guangdong), Guangdong Provincial Key Laboratory of Tropical Disease Research, Ministry of Education Key Laboratory of Infectious Diseases Research in South China, School of Public Health, Southern Medical University, Guangzhou, China.
School of Biomedical Engineering, Southern Medical University, Guangzhou, China.
Front Microbiol. 2025 Jul 17;16:1642520. doi: 10.3389/fmicb.2025.1642520. eCollection 2025.
Defective viral genomes (DVGs) are fragments derived from defective interfering particles (DIPs) that form during viral replication. They play important roles by interfering with complete virus replication and regulating host immune responses. Advances in high-throughput sequencing (HTS) and bioinformatic technology have significantly improved the ability to identify DIPs and DVGs. Their heterogeneity and dynamic formation mechanisms have been analyzed using long-read sequencing technologies. Both DIPs and DVGs inhibit wild-type viral proliferation by competing for viral replication resources and activating innate immune pathways such as those of retinoic acid-inducible gene 1 and mitochondrial antiviral signaling protein. This might influence infection outcomes by regulating inflammatory cytokine storms. The clinical application of DIPs and DVGs in their natural attenuated virus forms has been investigated in terms of novel vaccine design and antiviral therapy. This report systematically reviews cutting-edge detection techniques, molecular mechanisms, and translational medicine advances of DIPs and DVGs and provides a theoretical basis for developing broad-spectrum antiviral strategies based on DIPs.
缺陷病毒基因组(DVGs)是源自缺陷干扰颗粒(DIPs)的片段,这些颗粒在病毒复制过程中形成。它们通过干扰完整病毒复制和调节宿主免疫反应发挥重要作用。高通量测序(HTS)和生物信息学技术的进步显著提高了识别DIPs和DVGs的能力。已使用长读长测序技术分析了它们的异质性和动态形成机制。DIPs和DVGs都通过竞争病毒复制资源和激活视黄酸诱导基因1和线粒体抗病毒信号蛋白等先天免疫途径来抑制野生型病毒增殖。这可能通过调节炎性细胞因子风暴影响感染结果。已在新型疫苗设计和抗病毒治疗方面研究了DIPs和DVGs以其天然减毒病毒形式的临床应用。本报告系统综述了DIPs和DVGs的前沿检测技术、分子机制及转化医学进展,并为基于DIPs开发广谱抗病毒策略提供理论依据。