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How autophagy machinery is used by viruses for their replication.

How autophagy machinery is used by viruses for their replication.
病毒如何利用自噬机制进行复制。
批准号:
RGPIN-2019-06932
负责人:
Labonté, Patrick
金额:
$2.33万
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2019
资助国家:
加拿大
项目状态:
已结题
起止时间:
2019-01-01 至 2020-12-31

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中文摘要
翻译
自噬是存在于所有真核细胞中的高度进化保守的过程。它涉及双膜囊泡内的胞质溶胶区域的隔离和内容物到溶酶体的降解和材料的再循环。自噬的最新研究表明,它在抗病毒宿主防御中也起着重要作用。然而,尽管它具有抗病毒特性,但一些病毒已经进化到利用自噬或自噬相关蛋白来促进自身复制。为了在细胞内持续存在,许多受益于自噬的病毒已经开发出成功逃避其抗病毒活性的策略。重要的是,病毒用来破坏自噬的机制似乎非常多样化。更好地理解病毒破坏自噬的策略将提供有关病毒和自噬共同进化的信息。以前,我们和其他人已经清楚地证明,自噬在感染几种非常不同的病毒后被强烈激活,包括B肝炎病毒和丙型肝炎病毒(HBV,HCV),麻疹病毒和寨卡病毒。事实上,对于这些病毒,自噬的激活有利于病毒复制,而自噬蛋白的耗尽则损害病毒复制。因此,使用HCV作为模型,我们建议进行我们正在进行的自噬研究,目的如下:识别病毒用于操纵自噬机制以使其受益的策略。** 目的:*i)确定LC 3B及其同源物在HCV感染细胞中膜网形成和病毒复制中的功能。* ii)定义自噬机制如何有助于HCV复制位点的形成。**最近,我们证明了自噬对HCV复制的前病毒作用是由于自噬延伸复合物(ATG 5 -12/16)直接参与了HCV诱导的含有复制复合物(RC)的膜网的形成。引人注目的是,在RC处存在ATG 5 -12/16不会触发LC 3B在该位点的积累,也不会引起病毒结构的降解。由于在哺乳动物细胞中有六种LC 3同源物,因此将表征这些同源物在HCV诱导的膜网形成和HCV复制中的参与。到目前为止,我们的研究结果表明,HCV不需要自噬过程,而是劫持自噬机制以正确形成其复制位点。HCV如何避免自噬的降解过程以及自噬机制如何帮助HCV复制位点的形成将被研究。**许多非常不同的病毒已经进化到为了自己的利益而破坏自噬。通过进化过程,他们成功地将真正的抗菌过程转变为前病毒过程。使用HCV作为包膜正链RNA病毒的模型,我们将破译宿主-病毒相互作用,协调感染细胞中的自噬过程。
英文摘要
Autophagy is a highly evolutionarily conserved process present in all eukaryotic cells. It involves the sequestration of regions of cytosol within double-membrane vesicles and delivery of the contents to lysosomes for degradation and recycling of the material. Recent advances on autophagy has demonstrated that it also plays an important role in antiviral host defence. However, despite its antiviral properties, several viruses have evolved to exploit autophagy or autophagy-related proteins to promote their own replication. To persist within the cell, many of the viruses that benefit from autophagy have developed strategies to successfully escape its antiviral activity. Importantly, the mechanisms used by viruses to subvert autophagy seem to be extremely diversified. A better comprehension of the strategies utilized by viruses to subvert autophagy will provide information on the co-evolution of both, virus and autophagy.******Previously, we and others have clearly demonstrated that autophagy is strongly activated upon infection with several very divergent viruses including hepatitis B and C virus (HBV, HCV), morbillivirus and Zika virus. Indeed for these viruses, activation of autophagy favours viral replication while depletion of autophagy proteins impairs viral replication. Therefore, using HCV as a model, we propose to carry on our ongoing research on autophagy with the following aim: Identification of the strategies used by viruses to manipulate the autophagy machinery for their benefit. ******Objectives:***i) Define the function of LC3B and its homologs in the membranous web formation and viral replication in HCV-infected cells.***ii) Define how the autophagy machinery contributes to the formation of HCV replication site.******Recently, we demonstrate that the proviral effect of autophagy on HCV replication was due to the direct involvement of the autophagy elongation complex (ATG5-12/16) in the formation of the HCV-induced membranous web that harbour the replication complex (RC). Strikingly, the presence of ATG5-12/16 at RC does not trigger LC3B accumulation at this site nor the degradation of viral structures. Since there is six LC3 homologs in mammalian cells, the participation of these homologs in HCV-induced membranous web formation and HCV replication will be characterized.***Until now, our results demonstrated that HCV does not require the autophagy process but instead hijacks the autophagy machinery for the proper formation of its replication sites. How HCV avoid the degradative process of autophagy and how the autophagy machinery help HCV replication site formation will be studied.******Many very divergent viruses have evolved to subvert autophagy for their own benefit. Using an evolutionary process, they managed to turn a genuinely antimicrobial process into a proviral process. Using HCV as a model of an enveloped positive-stranded RNA virus, we will decipher the host-virus interplay that coordinates the autophagy process in infected cells.**
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How autophagy machinery is used by viruses for their replication.
Identification and characterization of the human factors targeted by the Nucleic Acid Polymers (NAP) responsible for its antiviral activity against HBV and HDV.
How autophagy machinery is used by viruses for their replication.
Identification and characterization of the human factors targeted by the Nucleic Acid Polymers (NAP) responsible for its antiviral activity against HBV and HDV.
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  • 批准号:
    82372205
  • 项目类别:
    面上项目
  • 资助金额:
    49.00万元
  • 批准年份:
    2023
  • 负责人:
    崔德荣
  • 依托单位:
SIRT2/Annexin A2/autophagy通路形成的分子机制及其在HCC细胞失巢凋亡抵抗中的作用研究
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  • 批准号:
    82370988
  • 项目类别:
    面上项目
  • 资助金额:
    48.00万元
  • 批准年份:
    2023
  • 负责人:
    经典
  • 依托单位: