Stiasny Karin, Kössl Christian, Heinz Franz X
Institute of Virology, Medical University of Vienna, Kinderspitalgasse 15, A-1095 Vienna, Austria.
J Virol. 2005 May;79(10):6511-5. doi: 10.1128/JVI.79.10.6511-6515.2005.
The trimeric postfusion structure of the C-terminally truncated fusion protein E of the flavivirus tick-borne encephalitis virus, a class II viral fusion protein, was previously determined (S. Bressanelli, K. Stiasny, S. L. Allison, E. A. Stura, S. Duquerroy, J. Lescar, F. X. Heinz, and F. A. Rey, EMBO J. 23:728-738, 2004). In this study we compared the properties of this truncated form with the full-length trimer and found that the so-called stem-anchor region not only confers additional stability to the full-length molecule but also structurally modifies the protein domain carrying the fusion peptide loop. These data provide experimental evidence to support the model of a fusion process that leads to the interaction of the stem-anchor region with the fusion peptide loop in the postfusion trimer.
黄病毒蜱传脑炎病毒的C端截短融合蛋白E的三聚体融合后结构,属于II类病毒融合蛋白,此前已被确定(S. Bressanelli、K. Stiasny、S. L. Allison、E. A. Stura、S. Duquerroy、J. Lescar、F. X. Heinz和F. A. Rey,《欧洲分子生物学组织杂志》23:728 - 738,2004年)。在本研究中,我们将这种截短形式的特性与全长三聚体进行了比较,发现所谓的茎 - 锚定区域不仅赋予全长分子额外的稳定性,还在结构上修饰了携带融合肽环的蛋白结构域。这些数据提供了实验证据,以支持融合过程模型,该模型导致茎 - 锚定区域与融合后三聚体中的融合肽环相互作用。