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Several Human Liver Cell Expressed Apolipoproteins Complement HCV Virus Production with Varying Efficacy Conferring Differential Specific Infectivity to Released Viruses

机译:几种人类肝细胞表达的载脂蛋白补充了HCV病毒的产生并具有不同的功效赋予释放的病毒以不同的特异性感染力

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摘要

Apolipoprotein E (ApoE), an exchangeable apolipoprotein, is necessary for production of infectious Hepatitis C virus (HCV) particles. However, ApoE is not the only liver-expressed apolipoprotein and the role of other apolipoproteins for production of infectious HCV progeny is incompletely defined. Therefore, we quantified mRNA expression of human apolipoproteins in primary human hepatocytes. Subsequently, cDNAs encoding apolipoproteins were expressed in 293T/miR-122 cells to explore if they complement HCV virus production in cells that are non-permissive due to limiting endogenous levels of human apolipoproteins. Primary human hepatocytes expressed high mRNA levels of ApoA1, A2, C1, C3, E, and H. ApoA4, A5, B, D, F, J, L1, L2, L3, L4, L6, M, and O were expressed at intermediate levels, and C2, C4, and L5 were not detected. All members of the ApoA and ApoC family of lipoproteins complemented HCV virus production in HCV transfected 293T/miR-122 cells, albeit with significantly lower efficacy compared with ApoE. In contrast, ApoD expression did not support production of infectious HCV. Specific infectivity of released particles complemented with ApoA family members was significantly lower compared with ApoE. Moreover, the ratio of extracellular to intracellular infectious virus was significantly higher for ApoE compared to ApoA2 and ApoC3. Since apolipoproteins complementing HCV virus production share amphipathic alpha helices as common structural features we altered the two alpha helices of ApoC1. Helix breaking mutations in both ApoC1 helices impaired virus assembly highlighting a critical role of alpha helices in apolipoproteins supporting HCV assembly. In summary, various liver expressed apolipoproteins with amphipathic alpha helices complement HCV virus production in human non liver cells. Differences in the efficiency of virus assembly, the specific infectivity of released particles, and the ratio between extracellular and intracellular infectivity point to distinct characteristics of these apolipoproteins that influence HCV assembly and cell entry. This will guide future research to precisely pinpoint how apolipoproteins function during virus assembly and cell entry.
机译:载脂蛋白E(ApoE)是一种可交换的载脂蛋白,对于生产感染性丙型肝炎病毒(HCV)颗粒是必需的。但是,ApoE并不是唯一的肝脏表达的载脂蛋白,其他载脂蛋白在生产感染性HCV后代中的作用还不完全明确。因此,我们量化了人类载脂蛋白在原代人肝细胞中的mRNA表达。随后,在293T / miR-122细胞中表达编码载脂蛋白的cDNA,以探讨它们是否能补充由于限制人类载脂蛋白的内源水平而在非允许细胞中产生HCV病毒。原代人肝细胞表达高水平的ApoA1,A2,C1,C3,E和H.ApoA4,A5,B,D,F,J,L1,L2,L3,L4,L6,M和O在以下位置表达中间水平,以及C2,C4和L5未检测到。 ApoA和ApoC脂蛋白家族的所有成员在HCV转染的293T / miR-122细胞中补充了HCV病毒的产生,尽管与ApoE相比其功效明显较低。相反,ApoD表达不支持感染性HCV的产生。与ApoE相比,与ApoA家族成员互补的释放颗粒的比感染性显着降低。此外,与ApoA2和ApoC3相比,ApoE的细胞外与细胞内感染性病毒的比例明显更高。由于补充HCV病毒的载脂蛋白共享两亲性α螺旋作为共同的结构特征,因此我们改变了ApoC1的两个α螺旋。两个ApoC1螺旋中的螺旋破坏突变均破坏了病毒装配,突出了α螺旋在支持HCV装配的载脂蛋白中的关键作用。总之,各种肝表达的载脂蛋白与两亲性α螺旋可补充人非肝细胞中的HCV病毒产生。病毒装配效率,释放的颗粒的特定感染性以及细胞外和细胞内感染性之比的差异表明,这些载脂蛋白的独特特性会影响HCV装配和细胞进入。这将指导未来的研究,以精确指出载脂蛋白在病毒装配和细胞进入过程中的功能。

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