R&D, Vaccine Division, Incepta Pharmaceutical Ltd, Dhaka, Bangladesh.
Department of Biotechnology and Genetic Engineering, Mawlana Bhashani Science and Technology University, Tangail, Bangladesh.
Rev Med Virol. 2024 Jan;34(1):e2505. doi: 10.1002/rmv.2505.
Viruses change the host cell metabolism to produce infectious particles and create optimal conditions for replication and reproduction. Numerous host cell pathways have been modified to ensure available biomolecules and sufficient energy. Metabolomics studies conducted over the past decade have revealed that eukaryotic viruses alter the metabolism of their host cells on a large scale. Modifying pathways like glycolysis, fatty acid synthesis and glutaminolysis could provide potential energy for virus multiplication. Thus, almost every virus has a unique metabolic signature and a different relationship between the viral life cycle and the individual metabolic processes. There are enormous research in virus induced metabolic reprogramming of host cells that is being conducted through numerous approaches using different vaccine candidates and antiviral drug substances. This review provides an overview of viral interference to different metabolic pathways and improved monitoring in this area will open up new ways for more effective antiviral therapies and combating virus induced oncogenesis.
病毒改变宿主细胞代谢以产生感染性颗粒,并为复制和繁殖创造最佳条件。许多宿主细胞途径已被修饰,以确保有可用的生物分子和足够的能量。过去十年进行的代谢组学研究表明,真核病毒会大规模改变宿主细胞的代谢。修饰糖酵解、脂肪酸合成和谷氨酰胺分解等途径可为病毒增殖提供潜在能量。因此,几乎每种病毒都有独特的代谢特征,病毒生命周期与个别代谢过程之间的关系也不同。目前正在通过使用不同疫苗候选物和抗病毒药物的多种方法进行大量关于病毒诱导的宿主细胞代谢重编程的研究。本综述概述了病毒对不同代谢途径的干扰,这一领域的改进监测将为更有效的抗病毒疗法和对抗病毒诱导的癌变开辟新途径。