首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A frameshift mutation in the pre-S region of the human hepatitis B virus genome allows production of surface antigen particles but eliminates binding to polymerized albumin.
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A frameshift mutation in the pre-S region of the human hepatitis B virus genome allows production of surface antigen particles but eliminates binding to polymerized albumin.

机译:人类乙型肝炎病毒基因组前S区的移码突变允许产生表面抗原颗粒但消除了与聚合白蛋白的结合。

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摘要

The coding region for the major polypeptide (p24S) of hepatitis B surface antigen (HBsAg) is preceded by an in-phase open reading frame termed pre-S. The coding potential of the pre-S region was examined in mouse L cells transformed with cloned hepatitis B virus DNA. Such cells produce three HBsAg-related polypeptides of Mr 24,000, 27,000, and 35,000 organized into complex particles of 22 nm diameter. These HBsAg particles bind to polymerized human albumin, but not to polyalbumins of several other species. In contrast, cells transformed with hepatitis B virus DNA bearing a frameshift mutation near the 3' end of the pre-S region secrete immunoreactive HBsAg particles containing only the 24,000 and 27,000 Mr species. These mutant particles, which lack the 35,000 Mr species, are unable to bind polymerized human albumin. These studies indicate that the pre-S region encodes the 35,000 Mr species, that this product accounts for the known polyalbumin-binding activity of HBsAg but is not required for assembly and secretion of HBsAg 22-nm particles, and that the major polypeptide of HBsAg is not derived primarily by cleavage of larger precursors encoded by the pre-S region.
机译:乙型肝炎表面抗原(HBsAg)的主要多肽(p24S)的编码区之前是同相开放阅读框,称为pre-S。在用克隆的乙型肝炎病毒DNA转化的小鼠L细胞中检查了pre-S区的编码潜力。此类细胞会产生三种分别与Mrs 24,000、27,000和35,000的HBsAg相关的多肽,这些多肽组织成直径为22 nm的复杂粒子。这些HBsAg颗粒与聚合的人白蛋白结合,但不与其他几个物种的多白蛋白结合。相反,用乙肝病毒DNA转化的细胞在前S区3'端附近携带移码突变,分泌的免疫反应性HBsAg颗粒仅包含24,000和27,000个Mr物种。这些缺少35,000 Mr物种的突变体颗粒无法结合聚合的人白蛋白。这些研究表明,前S区编码35,000个Mr物种,该产物说明了已知的HBsAg的多白蛋白结合活性,但对于组装和分泌HBsAg 22 nm颗粒不是必需的,并且是HBsAg的主要多肽并非主要通过切割由pre-S区域编码的较大前体而获得。

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