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大型病毒包膜蛋白的前S结构域决定了禽乙型肝炎病毒的宿主范围。

The pre-S domain of the large viral envelope protein determines host range in avian hepatitis B viruses.

作者信息

Ishikawa T, Ganem D

机构信息

Howard Hughes Medical Institute, University of California Medical Center, San Francisco 94143-0502, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 Jul 3;92(14):6259-63. doi: 10.1073/pnas.92.14.6259.

Abstract

In addition to their well-recognized hepatotropism, all hepatitis B viruses (HBVs) display marked species specificity, growing poorly or not at all in species other than those closely related to their natural hosts. We have examined the molecular basis for this narrow host range, using duck HBV (DHBV) and heron HBV (HHBV) as a model system. HHBV virions will not infect ducks in vivo and infect cultured duck hepatocytes extremely inefficiently in vitro. Mutant HHBV genomes lacking all viral envelope proteins (HHBV env-) can be complemented in trans with DHBV envelope proteins; the resulting pseudotyped virions can efficiently infect duck hepatocytes. Further complementation analysis reveals that of the two viral surface proteins (L and S), it is the L protein that determines host range. Pseudotyping of HHBV env- with DHBV/HHBV chimeric envelope proteins reveals that replacement of as few as 69 amino acids of the pre-S domain of the HHBV L protein by their DHBV counterparts is sufficient to permit infection of duck hepatocytes. These studies indicate that the species-specificity of hepadnaviral infection is determined at the level of virus entry and is governed by the pre-S domain of the viral L protein.

摘要

除了其广为人知的嗜肝性外,所有乙型肝炎病毒(HBV)都表现出明显的物种特异性,在与其天然宿主关系不密切的物种中生长不良或根本不生长。我们以鸭乙型肝炎病毒(DHBV)和鹭乙型肝炎病毒(HHBV)为模型系统,研究了这种狭窄宿主范围的分子基础。HHBV病毒粒子在体内不会感染鸭子,在体外感染培养的鸭肝细胞的效率极低。缺乏所有病毒包膜蛋白的突变型HHBV基因组(HHBV env-)可以用DHBV包膜蛋白进行反式互补;产生的假型病毒粒子可以有效感染鸭肝细胞。进一步的互补分析表明,在两种病毒表面蛋白(L和S)中,决定宿主范围的是L蛋白。用DHBV/HHBV嵌合包膜蛋白对HHBV env-进行假型化表明,将HHBV L蛋白前S结构域的少至69个氨基酸替换为DHBV对应氨基酸就足以允许感染鸭肝细胞。这些研究表明,嗜肝DNA病毒感染的物种特异性在病毒进入水平上确定,并由病毒L蛋白的前S结构域控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86ab/41497/68e89088295c/pnas01490-0054-a.jpg

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