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Methods for Lipid Droplet Biophysical Characterization in Flaviviridae Infections

机译:黄病毒感染的脂质液滴生物物理表征方法

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摘要

Lipid droplets (LDs) are intracellular organelles for neutral lipid storage, originated from the endoplasmic reticulum. They play an essential role in lipid metabolism and cellular homeostasis. In fact, LDs are complex organelles, involved in many more cellular processes than those initially proposed. They have been extensively studied in the context of LD-associated pathologies. In particular, LDs have emerged as critical for virus replication and assembly. Viruses from the Flaviviridae family, namely dengue virus (DENV), hepatitis C virus (HCV), West Nile virus (WNV), and Zika virus (ZIKV), interact with LDs to usurp the host lipid metabolism for their own viral replication and pathogenesis. In general, during Flaviviridae infections it is observed an increasing number of host intracellular LDs. Several viral proteins interact with LDs during different steps of the viral life cycle. The HCV core protein and DENV capsid protein, extensively interact with LDs to regulate their replication and assembly. Detailed studies of LDs in viral infections may contribute for the development of possible inhibitors of key steps of viral replication. Here, we reviewed different techniques that can be used to characterize LDs isolated from infected or non-infected cells. Microscopy studies have been commonly used to observe LDs accumulation and localization in infected cell cultures. Fluorescent dyes, which may affect LDs directly, are widely used to probe LDs but there are also approaches that do not require the use of fluorescence, namely stimulated Raman scattering, electron and atomic force microscopy-based approaches. These three are powerful techniques to characterize LDs morphology. Raman scattering microscopy allows studying LDs in a single cell. Electron and atomic force microscopies enable a better characterization of LDs in terms of structure and interaction with other organelles. Other biophysical techniques, such as dynamic light scattering and zeta potential are also excellent to characterize LDs in terms of size in a simple and fast way and test possible LDs interaction with viral proteins. These methodologies are reviewed in detail, in the context of viral studies.
机译:脂质滴(LDs)是中性脂质储存的细胞内细胞器,起源于内质网。它们在脂质代谢和细胞稳态中起重要作用。实际上,LDs是复杂的细胞器,比最初提出的细胞器参与更多的细胞过程。他们已经在LD相关的病理学背景下进行了广泛的研究。特别是,LD已成为病毒复制和组装的关键。黄病毒科的病毒,即登革热病毒(DENV),丙型肝炎病毒(HCV),西尼罗河病毒(WNV)和寨卡病毒(ZIKV),与LDs相互作用,侵占宿主脂质代谢,从而自身进行病毒复制和发病。通常,在黄病毒科感染期间,观察到宿主细胞内LD的数量增加。在病毒生命周期的不同步骤中,几种病毒蛋白与LDs相互作用。 HCV核心蛋白和DENV衣壳蛋白与LD广泛相互作用,以调节其复制和装配。 LDs在病毒感染中的详细研究可能有助于开发病毒复制关键步骤的抑制剂。在这里,我们审查了可用于表征从感染或未感染细胞中分离出的LD的不同技术。显微镜研究已普遍用于观察被感染细胞培养物中LD的积累和定位。可能直接影响LD的荧光染料已广泛用于探测LD,但也有一些方法不需要使用荧光,即受激拉曼散射,基于电子和原子力显微镜的方法。这三种是表征LD形态的强大技术。拉曼散射显微镜允许研究单个细胞中的LD。电子和原子力显微镜可以更好地表征LD的结构以及与其他细胞器的相互作用。其他生物物理技术(例如动态光散射和zeta电位)也非常适用于以简单,快速的方式表征LD的大小,并测试LD与病毒蛋白的相互作用。在病毒研究的背景下,对这些方法进行了详细的回顾。

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