Rotavirus exploits SREBP pathway for hyper lipid biogenesis during replication.

A. Naveed, Muhammad Ammar Naveed, Lubna Akram, Muhammad Sharif, Mun-Il Kang, Sang-Ik Park
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引用次数: 1

Abstract

Species A rotavirus (RVA) is one of the pathogens causing severe acute gastroenteritis in young children and animals worldwide. RVA replicates and assembles its immature particle within electron dense compartments known as viroplasm. Despite the importance of lipid droplet (LD) formation in the RVA viroplasm, the upstream molecules modulating LD formation have remained elusive. Here, we demonstrate that RVA infection reprogrammes sterol regulatory element binding proteins (SREBPs)-dependent lipogenic pathways in virus-infected cells. Interestingly, silencing of SREBPs significantly reduced RVA protein synthesis, genome replication and progeny virus production. Moreover, knockout of SREBP-1c gene conferred resistance to RVA-induced diarrhoea, reduction of RVA replication, and mitigation of small intestinal pathology in mice. This study identifies SREBPs-mediated lipogenic reprogramming in RVA-infected host cells for facilitating virus replication and SREBPs as a potential target for developing therapeutics against RVA infection.
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轮状病毒在复制过程中利用SREBP途径进行高脂生物生成。
A种轮状病毒(RVA)是世界范围内引起幼儿和动物严重急性胃肠炎的病原体之一。RVA在称为病毒质的电子密集区室中复制和组装其未成熟颗粒。尽管脂滴(LD)的形成在RVA病毒质中具有重要意义,但调节LD形成的上游分子仍然是难以捉摸的。在这里,我们证明了RVA感染重新编程了病毒感染细胞中依赖于固醇调节元件结合蛋白(SREBPs)的脂肪生成途径。有趣的是,SREBPs的沉默显著降低了RVA蛋白的合成、基因组复制和子代病毒的产生。此外,敲除SREBP-1c基因可使小鼠抵抗RVA诱导的腹泻,减少RVA复制,并减轻小肠病理。本研究确定了SREBPs介导的RVA感染宿主细胞中的脂质重编程,以促进病毒复制,并将SREBPs作为开发抗RVA感染治疗方法的潜在靶点。
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