Wasenauer G, Köck J, Schlicht H J
Department of Virology, University of Ulm, Germany.
J Virol. 1993 Mar;67(3):1315-21. doi: 10.1128/JVI.67.3.1315-1321.1993.
The mature form of the secretory core protein (HBe protein) of human hepatitis B virus contains four cysteines which are located at amino acid positions -7, 48, 61, and 107 relative to the HBc start methionine. In addition, there is a cysteine, Cys-183, located in the C-terminal domain of the HBe precursor, which is cleaved during HBe maturation. Here, the significance of these cysteines for biosynthesis and antigenicity of the HBe protein was examined. The cysteines at positions -7 and 61 were found to be crucial for HBe biosynthesis. As has already been described, if the Cys at position -7 is mutated, disulfide-linked HBe homodimers which have both HBe antigenicity and HBc antigenicity are expressed. Here we show that these dimers are due to Cys-61-Cys-61 disulfide bridges which are formed only if the Cys at position -7 is not present. In the wild-type protein, this dimerization appears to be inhibited by formation of intramolecular disulfide bridges between the Cys at -7 and one of the internal cysteines. Moreover, Cys-61 is important for HBe biosynthesis in general since mutation of this amino acid results in production of HBe proteins which are either only poorly secreted or possess a different antigenicity.
人类乙型肝炎病毒分泌核心蛋白(HBe蛋白)的成熟形式含有四个半胱氨酸,相对于HBc起始甲硫氨酸,它们位于氨基酸位置-7、48、61和107。此外,在HBe前体的C末端结构域中有一个半胱氨酸Cys-183,其在HBe成熟过程中被切割。在此,研究了这些半胱氨酸对HBe蛋白生物合成和抗原性的意义。发现-7和61位的半胱氨酸对HBe生物合成至关重要。如前所述,如果-7位的半胱氨酸发生突变,会表达出具有HBe抗原性和HBc抗原性的二硫键连接的HBe同型二聚体。在此我们表明,这些二聚体是由于仅在-7位不存在半胱氨酸时形成的Cys-61-Cys-61二硫键。在野生型蛋白中,这种二聚化似乎被-7位的半胱氨酸与一个内部半胱氨酸之间形成的分子内二硫键所抑制。此外,一般而言,Cys-61对HBe生物合成很重要,因为该氨基酸的突变会导致产生分泌不良或具有不同抗原性的HBe蛋白。