病毒-宿主分子相互作用和代谢调节:抑制黄病毒发病机制的策略。

Zeeshan Ahmad Khan, Mukesh Kumar Yadav, Dong-Woo Lim, Hojun Kim, Jing-Hua Wang, AbuZar Ansari
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引用次数: 0

摘要

黄病毒包括具有全球影响的病原体,如西尼罗河病毒、黄热病病毒、寨卡病毒、日本脑炎病毒和登革热病毒,它们对人类感染有重大影响。尽管黄病毒介导的发病机制不断出现和复苏,但在预防和治疗黄病毒感染方面,缺乏特定的治疗选择仍然是一个挑战。通过融合、转录、复制和成熟等复杂的过程,病毒和宿主代谢相互作用的复杂相互作用影响着病理生理。关键的相互作用涉及代谢分子,如氨基酸、葡萄糖、脂肪酸和核苷酸,它们在黄病毒的复制和成熟中都起着关键作用。这些病毒-宿主代谢分子相互作用劫持和调节宿主代谢的分子机制。对这些复杂代谢途径的全面了解提供了有价值的见解,可能揭示针对黄病毒发病机制的治疗干预的新靶点。本文重点介绍了针对特定代谢分子(如氨基酸、葡萄糖、脂肪酸和核苷酸)的治疗药物的开发前景,这些代谢分子与黄病毒复制相互作用,并与宿主代谢调节密切相关。当前药物的临床局限性促使人们基于对病毒与宿主分子相互作用的理解,开发新的黄病毒抑制策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Viral-host molecular interactions and metabolic modulation: Strategies to inhibit flaviviruses pathogenesis.

Flaviviruses, which include globally impactful pathogens, such as West Nile virus, yellow fever virus, Zika virus, Japanese encephalitis virus, and dengue virus, contribute significantly to human infections. Despite the ongoing emergence and resurgence of flavivirus-mediated pathogenesis, the absence of specific therapeutic options remains a challenge in the prevention and treatment of flaviviral infections. Through the intricate processes of fusion, transcription, replication, and maturation, the complex interplay of viral and host metabolic interactions affects pathophysiology. Crucial interactions involve metabolic molecules, such as amino acids, glucose, fatty acids, and nucleotides, each playing a pivotal role in the replication and maturation of flaviviruses. These viral-host metabolic molecular interactions hijack and modulate the molecular mechanisms of host metabolism. A comprehensive understanding of these intricate metabolic pathways offers valuable insights, potentially unveiling novel targets for therapeutic interventions against flaviviral pathogenesis. This review emphasizes promising avenues for the development of therapeutic agents that target specific metabolic molecules, such as amino acids, glucose, fatty acids, and nucleotides, which interact with flavivirus replication and are closely linked to the modulation of host metabolism. The clinical limitations of current drugs have prompted the development of new inhibitory strategies for flaviviruses based on an understanding of the molecular interactions between the virus and the host.

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