Baghian A, Kousoulas K G
Department of Veterinary Microbiology and Parasitology, School of Veterinary Medicine, Louisiana State University, Baton Rouge 70803.
Virology. 1993 Oct;196(2):548-56. doi: 10.1006/viro.1993.1510.
To evaluate the importance of the Na+,K+ pump and ionic gradients in virus-induced cell fusion, we investigated the effects of melittin, a 26 amino acid bioactive peptide found in honey bee venom, on cell fusion caused by HSV-1 syncytial mutants. Melittin inhibited fusion of Vero cells caused by HSV-1 mutant viruses mP(MP), KOS (syn20) and KOS (FFV3) containing the syncytial mutation syn1 in glycoprotein K. However, it did not affect cell fusion caused by mutants HFEM(tsB5) or KOS amb1511-7 with mutations in glycoprotein B. Melittin caused specific reversion of syn1 mutant virus plaques to syn+ (wild-type) plaque morphology, and inhibited virus adsorption and penetration. It also inhibited the Na+,K+ pump activity, and the binding of 3H-ouabain to the Na+,K+ pump of infected Vero cells. The Na+,K+ pump activity of infected Vero cells in comparison to mock-infected cells was significantly decreased. Ouabain, a specific inhibitor of the Na+,K+ pump, inhibited fusion of Vero cells caused by all syncytial virus strains.
为了评估Na +,K +泵和离子梯度在病毒诱导的细胞融合中的重要性,我们研究了蜂毒中发现的一种26个氨基酸的生物活性肽蜂毒素对单纯疱疹病毒1型(HSV-1)合胞体突变体引起的细胞融合的影响。蜂毒素抑制了由含有糖蛋白K中合胞体突变syn1的HSV-1突变病毒mP(MP)、KOS (syn20)和KOS (FFV3)引起的Vero细胞融合。然而,它并不影响由糖蛋白B发生突变的突变体HFEM(tsB5)或KOS amb1511-7引起的细胞融合。蜂毒素使syn1突变病毒噬斑特异性地恢复为syn +(野生型)噬斑形态,并抑制病毒吸附和穿透。它还抑制Na +,K +泵活性,以及3H-哇巴因与受感染Vero细胞的Na +,K +泵的结合。与模拟感染的细胞相比,受感染Vero细胞的Na +,K +泵活性显著降低。Na +,K +泵的特异性抑制剂哇巴因抑制了所有合胞体病毒株引起的Vero细胞融合。