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Bidirectional lipid droplet velocities are controlled by differential binding strengths of HCV core DII protein

机译:双向脂质液滴速度由HCV核心DII蛋白的不同结合强度控制

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摘要

Host cell lipid droplets (LD) are essential in the hepatitis C virus (HCV) life cycle and are targeted by the viral capsid core protein. Core-coated LDs accumulate in the perinuclear region and facilitate viral particle assembly, but it is unclear how mobility of these LDs is directed by core. Herein we used two-photon fluorescence, differential interference contrast imaging, and coherent anti-Stokes Raman scattering microscopies, to reveal novel core-mediated changes to LD dynamics. Expression of core protein's lipid binding domain II (DII-core) induced slower LD speeds, but did not affect directionality of movement on microtubules. Modulating the LD binding strength of DII-core further impacted LD mobility, revealing the temporal effects of LD-bound DII-core. These results for DII-core coated LDs support a model for core-mediated LD localization that involves core slowing down the rate of movement of LDs until localization at the perinuclear region is accomplished where LD movement ceases. The guided localization of LDs by HCV core protein not only is essential to the viral life cycle but also poses an interesting target for the development of antiviral strategies against HCV. Copyright: \ua9 2013 Lyn et al.
机译:宿主细胞脂质滴(LD)在丙型肝炎病毒(HCV)的生命周期中必不可少,并被病毒衣壳核心蛋白作为目标。核心包被的LDs积聚在核周区域,并促进病毒颗粒的组装,但是尚不清楚这些LDs的移动性如何由核心决定。在本文中,我们使用了双光子荧光,微分干涉对比成像和相干的反斯托克斯拉曼散射显微技术,以揭示LD动力学的新型核心介导的变化。核心蛋白的脂质结合结构域II(DII-核心)的表达诱导了较慢的LD速度,但不影响微管上运动的方向性。调节DII核心的LD结合强度进一步影响了LD的迁移率,揭示了LD结合DII核心的时间效应。 DII核心包被的LD的这些结果支持了核心介导的LD定位的模型,该模型涉及核心减慢LD的移动速率,直到完成LD移动停止的核周区域的定位。 HCV核心蛋白对LDs的指导定位不仅对病毒生命周期至关重要,而且为开发针对HCV的抗病毒策略提出了一个有趣的目标。版权所有:\ ua9 2013 Lyn等。

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