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对一种大量糖基化的乙型肝炎病毒表面抗原逃逸突变株的理化特性、复制和发病机制的分析。

Analysis of the Physicochemical Properties, Replication and Pathophysiology of a Massively Glycosylated Hepatitis B Virus HBsAg Escape Mutant.

机构信息

Department of Microbiology and Hygiene, Bangladesh Agricultural University, Mymensingh 2202, Bangladesh.

Department of Microbiology and Immunology, Division of Virology, Osaka University Graduate School of Medicine, Osaka 565-0871, Japan.

出版信息

Viruses. 2021 Nov 22;13(11):2328. doi: 10.3390/v13112328.

Abstract

Mutations in HBsAg, the surface antigen of the hepatitis B virus (HBV), might affect the serum HBV DNA level of HBV-infected patients, since the reverse transcriptase (RT) domain of HBV polymerase overlaps with the HBsAg-coding region. We previously identified a diagnostic escape mutant (W3S) HBV that produces massively glycosylated HBsAg. In this study, we constructed an HBV-producing vector that expresses W3S HBs (pHB-W3S) along with a wild-type HBV-producing plasmid (pHB-WT) in order to analyze the physicochemical properties, replication, and antiviral drug response of the mutant. Transfection of either pHB-WT or W3S into HepG2 cells yielded similar CsCl density profiles and eAg expression, as did transfection of a glycosylation defective mutant, pHB-W3S (N146G), in which a glycosylation site at the 146aa asparagine (N) site of HBs was mutated to glycine (G). Virion secretion, however, seemed to be severely impaired in cases of pHB-W3S and pHB-W3S (N146G), compared with pHB-WT, as determined by qPCR and Southern blot analysis. Furthermore, inhibition of glycosylation using tunicamycin on wild-type HBV production also reduced the virion secretion. These results suggested that the HBV core and Dane particle could be formed either by massively glycosylated or glycosylation-defective HBsAg, but reduced and/or almost completely blocked the virion secretion efficiency, indicating that balanced glycosylation of HBsAg is required for efficient release of HBV, and mutations inducing an imbalanced glycosylation of HBs would cause the virion to become stuck in the cells, which might be associated with various pathogeneses due to HBV infection.

摘要

HBV 表面抗原(HBsAg)中的突变可能会影响 HBV 感染患者的血清 HBV DNA 水平,因为 HBV 聚合酶的逆转录酶(RT)结构域与 HBsAg 编码区重叠。我们之前鉴定了一种产生大量糖基化 HBsAg 的诊断逃逸突变(W3S)HBV。在这项研究中,我们构建了一个表达 W3S HBs 的 HBV 产生载体(pHB-W3S)以及一个野生型 HBV 产生质粒(pHB-WT),以分析突变体的理化特性、复制和抗病毒药物反应。将 pHB-WT 或 W3S 转染 HepG2 细胞可产生类似的 CsCl 密度图谱和 eAg 表达,而转染 146aa 天冬酰胺(N)位点的糖基化缺陷突变体 pHB-W3S(N146G)也可产生类似的结果,该突变体中 HBs 的一个糖基化位点突变为甘氨酸(G)。然而,与 pHB-WT 相比,通过 qPCR 和 Southern blot 分析,似乎 pHB-W3S 和 pHB-W3S(N146G)的病毒粒子分泌受到严重损害。此外,在用 tunicamycin 抑制野生型 HBV 产生的糖基化时,也降低了病毒粒子的分泌。这些结果表明,HBV 核心和 Dane 颗粒可以由大量糖基化或糖基化缺陷的 HBsAg 形成,但降低和/或几乎完全阻断了病毒粒子的分泌效率,表明 HBsAg 的平衡糖基化是 HBV 有效释放所必需的,而诱导 HBsAg 不平衡糖基化的突变会导致病毒粒子卡在细胞中,这可能与 HBV 感染引起的各种发病机制有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ff5/8622389/a7c01aa65288/viruses-13-02328-g001.jpg

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