Van Damme Ellen, Vanhove Jolien, Severyn Bryan, Verschueren Lore, Pauwels Frederik
Janssen Research & Development, Janssen Pharmaceutical Companies, Beerse, Belgium.
Early Discovery Biology, Charles River Laboratories, Beerse, Belgium.
Front Microbiol. 2021 Sep 16;12:724877. doi: 10.3389/fmicb.2021.724877. eCollection 2021.
Despite the availability of a prophylactic vaccine, chronic hepatitis B (CHB) caused by the hepatitis B virus (HBV) is a major health problem affecting an estimated 292 million people globally. Current therapeutic goals are to achieve functional cure characterized by HBsAg seroclearance and the absence of HBV-DNA after treatment cessation. However, at present, functional cure is thought to be complicated due to the presence of covalently closed circular DNA (cccDNA) and integrated HBV-DNA. Even if the episomal cccDNA is silenced or eliminated, it remains unclear how important the high level of HBsAg that is expressed from integrated HBV DNA is for the pathology. To identify therapies that could bring about high rates of functional cure, in-depth knowledge of the virus' biology is imperative to pinpoint mechanisms for novel therapeutic targets. The viral proteins and the episomal cccDNA are considered integral for the control and maintenance of the HBV life cycle and through direct interaction with the host proteome they help create the most optimal environment for the virus whilst avoiding immune detection. New HBV-host protein interactions are continuously being identified. Unfortunately, a compendium of the most recent information is lacking and an interactome is unavailable. This article provides a comprehensive review of the virus-host relationship from viral entry to release, as well as an interactome of cccDNA, HBc, and HBx.
尽管有预防性疫苗,但由乙型肝炎病毒(HBV)引起的慢性乙型肝炎(CHB)仍是一个重大的健康问题,全球估计有2.92亿人受其影响。当前的治疗目标是实现功能性治愈,其特征为HBsAg血清学清除以及停药后无HBV-DNA。然而,目前由于共价闭合环状DNA(cccDNA)和整合型HBV-DNA的存在,功能性治愈被认为很复杂。即使游离的cccDNA被沉默或消除,整合型HBV DNA所表达的高水平HBsAg对病理过程的重要性仍不清楚。为了确定能够实现高功能性治愈率的疗法,深入了解病毒生物学对于确定新治疗靶点的机制至关重要。病毒蛋白和游离cccDNA被认为是HBV生命周期控制和维持所必需的,它们通过与宿主蛋白质组直接相互作用,为病毒创造最适宜的环境,同时避免免疫检测。新的HBV-宿主蛋白相互作用不断被发现。遗憾的是,缺乏最新信息的汇总,且尚无相互作用组。本文全面综述了从病毒进入到释放的病毒-宿主关系,以及cccDNA、HBc和HBx的相互作用组。