Gibson S, Bundo-Morita K, Portner A, Lenard J
Department of Physiology and Biophysics, University of Medicine and Dentistry of New Jersey, Robert Wood Johnson Medical School, Piscataway, New Jersey 08854.
Virology. 1988 Mar;163(1):226-9. doi: 10.1016/0042-6822(88)90254-1.
Sendai mutant ts271 contains less than 5% of the amount of HN glycoprotein found in wild-type Sendai. Fusion of this mutant with cardiolipin liposomes revealed no differences from the wild-type virus with regard to specific activity, pH dependence, or radiation inactivation. Target sizes of both mutant and wild-type viral proteins were determined by the radiation-induced disappearance of each band from an SDS-polyacrylamide gel and no differences were found. Of the viral proteins, only F had a target size corresponding to the monomer molecular weight, ca. 60 kDa, identical to the minimum unit previously determined by functional assay for Sendai virus-erythrocyte membrane fusion (K. Bundo-Morita, S. Gibson, and J. Lenard, Biochemistry 26, 6223-6227 (1987)). This provides additional evidence that F alone is the active protein mediating Sendai-erythrocyte fusion. It is concluded that the HN protein is unlikely to mediate any fusion reactions of the intact virions, either with biological membranes or with cardiolipin liposomes.
仙台突变体ts271所含的HN糖蛋白量不到野生型仙台病毒的5%。该突变体与心磷脂脂质体的融合在比活性、pH依赖性或辐射失活方面与野生型病毒没有差异。通过SDS-聚丙烯酰胺凝胶中各条带因辐射而消失来确定突变体和野生型病毒蛋白的靶标大小,未发现差异。在病毒蛋白中,只有F的靶标大小对应于单体分子量,约60 kDa,这与先前通过功能测定确定的仙台病毒-红细胞膜融合的最小单位相同(K. Bundo-Morita、S. Gibson和J. Lenard,《生物化学》26,6223 - 6227(1987))。这提供了额外的证据,表明单独的F是介导仙台-红细胞融合的活性蛋白。得出的结论是,HN蛋白不太可能介导完整病毒粒子与生物膜或心磷脂脂质体的任何融合反应。