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Modulation of Lipid Droplet Metabolism—A Potential Target for Therapeutic Intervention in Flaviviridae Infections

机译:脂质液滴代谢的调节—一种治疗性干预的黄病毒科感染的潜在目标。

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Lipid droplets (LDs) are endoplasmic reticulum (ER)-related dynamic organelles that store and regulate fatty acids and neutral lipids. They play a central role in cellular energy storage, lipid metabolism and cellular homeostasis. It has become evident that viruses have co-evolved in order to exploit host lipid metabolic pathways. This is especially characteristic of the Flaviviridae family, including hepatitis C virus (HCV) and several flaviviruses. Devoid of an appropriate lipid biosynthetic machinery of their own, these single-strand positive-sense RNA viruses can induce dramatic changes in host metabolic pathways to establish a favorable environment for viral multiplication and acquire essential components to facilitate their assembly and traffic. Here we have reviewed the current knowledge on the intracellular life cycle of those from the Flaviviridae family, with particular emphasis on HCV and dengue virus (DENV), and their association with the biosynthesis and metabolism of LDs, with the aim to identify potential antiviral targets for development of novel therapeutic interventions.
机译:脂质滴(LDs)是内质网(ER)相关的动态细胞器,可存储和调节脂肪酸和中性脂质。它们在细胞能量存储,脂质代谢和细胞稳态中起着核心作用。显然,病毒已经共同进化以利用宿主脂质代谢途径。这是黄病毒科的特征,包括丙型肝炎病毒(HCV)和几种黄病毒。这些单链正义RNA病毒本身缺乏合适的脂质生物合成机制,可以诱导宿主代谢途径发生显着变化,从而为病毒繁殖建立有利的环境,并获得必需的成分以促进其组装和运输。在这里,我们回顾了有关黄病毒科(Flaviviridae family)的细胞内生命周期的最新知识,尤其是HCV和登革热病毒(DENV)及其与LDs的生物合成和代谢的关联,目的是确定潜在的抗病毒靶标用于开发新型治疗干预措施。

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