首页> 外文期刊>EBioMedicine >Treatment-Induced Viral Cure of Hepatitis C Virus-Infected Patients Involves a Dynamic Interplay among three Important Molecular Players in Lipid Homeostasis: Circulating microRNA (miR)-24, miR-223, and Proprotein Convertase Subtilisin/Kexin Type 9
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Treatment-Induced Viral Cure of Hepatitis C Virus-Infected Patients Involves a Dynamic Interplay among three Important Molecular Players in Lipid Homeostasis: Circulating microRNA (miR)-24, miR-223, and Proprotein Convertase Subtilisin/Kexin Type 9

机译:治疗诱导的丙型肝炎病毒感染患者的病毒治疗涉及脂质稳态中的三个重要分子参与者之间的动态相互作用:循环微RNA(miR)-24,miR-223和前蛋白转化酶枯草杆菌蛋白酶/ Kexin 9型。

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In patients with chronic hepatitis C virus (HCV) infection, viral hijacking of the host-cell biosynthetic pathways is associated with altered lipid metabolism, which contributes to disease progression and may influence antiviral response. We investigated the molecular interplay among four key regulators of lipid homeostasis [microRNA (miR)-122, miR-24, miR-223, and proprotein convertase subtilisin/kexin type 9 (PCSK9)] in HCV-infected patients (n=72) who achieved a treatment-based viral cure after interferon-based therapy with first-generation direct-acting antivirals. Real-time PCR was used to quantify microRNA plasma levels, and ELISA assays were used to determine plasma concentrations of PCSK9. We report that levels of miR-24 and miR-223 significantly increased in patients achieving sustained virologic response (SVR), whereas the levels of miR-122, a liver-specific cofactor for HCV infection, decreased in these patients. PCSK9 concentrations were significantly increased in SVRs, suggesting that PCSK9 may help impede viral infection. The modulatory effect of PCSK9 on HCV infection was also demonstrated in the context of HCV-infected Huh-7.5.1 cells employing recombinant human PCSK9 mutants. Together, these results provide insights into a novel coordinated interplay among three important molecular players in lipid homeostasis - circulating miR-24, miR-223 and PCSK9 - whose regulation is affected by HCV infection and treatment-based viral cure.
机译:在患有慢性丙型肝炎病毒(HCV)感染的患者中,宿主细胞生物合成途径的病毒劫持与脂类代谢的改变有关,脂类代谢的改变有助于疾病的进展并可能影响抗病毒反应。我们调查了HCV感染患者中脂类稳态的四个关键调节因子[microRNA(miR)-122,miR-24,miR-223和前蛋白转化酶枯草杆菌蛋白酶/ kexin 9型(PCSK9)]之间的分子相互作用。在使用第一代直接作用抗病毒药物进行基于干扰素的治疗后,他们实现了基于治疗​​的病毒治愈。实时PCR用于定量microRNA血浆水平,而ELISA分析用于确定PCSK9的血浆浓度。我们报告说,在实现持续病毒学应答(SVR)的患者中,miR-24和miR-223的水平显着升高,而在这些患者中,miR-122(一种肝特异性HCV感染的辅助因子)的水平降低。 SVR中PCSK9的浓度显着增加,表明PCSK9可能有助于阻止病毒感染。在使用重组人PCSK9突变体的HCV感染的Huh-7.5.1细胞的背景下,也证明了PCSK9对HCV感染的调节作用。在一起,这些结果提供了对脂质稳态中三个重要分子参与者之间新的协同相互作用的见解-循环miR-​​24,miR-223和PCSK9,它们的调节受HCV感染和基于治疗的病毒治愈的影响。

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