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Improving promiscuous mammalian cell entry by the baculovirus Autographa californica multiple nuclear polyhedrosis virus

机译:杆状病毒Autographa californica多核多角体病毒改善混杂的哺乳动物细胞进入

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摘要

The insect baculovirus AcMNPV (Autographa californica multiple nuclear polyhedrosis virus) enters many mammalian cell lines, prompting its application as a general eukaryotic gene delivery agent, but the basis of entry is poorly understood. For adherent mammalian cells, we show that entry is favoured by low pH and by increasing the available cell-surface area through a transient release from the substratum. Low pH also stimulated baculovirus entry into mammalian cells grown in suspension which, optimally, could reach 90% of the transduced population. The basic loop, residues 268–281, of the viral surface glycoprotein gp64 was required for entry and a tetra mutant with increasing basicity increased entry into a range of mammalian cells. The same mutant failed to plaque in Sf9 cells, instead showing individual cell entry and minimal cell-to-cell spread, consistent with an altered fusion phenotype. Viruses grown in different insect cells showed different mammalian cell entry efficiencies, suggesting that additional factors also govern entry.
机译:昆虫杆状病毒AcMNPV(加利福尼亚州产的苜蓿芽孢杆菌多核多角体病毒)进入许多哺乳动物细胞系,促使其作为一般的真核基因递送剂应用,但进入的基础了解甚少。对于粘附的哺乳动物细胞,我们显示低pH值和通过从基质中瞬时释放增加可利用的细胞表面积而有利于进入。低pH值还会刺激杆状病毒进入以悬浮液生长的哺乳动物细胞,而悬浮液最理想的情况是可以达到90%的转导种群。病毒表面糖蛋白gp64的基本环(残基268-281)是进入所必需的,而随着碱性的增加,四突变体增加了进入一系列哺乳动物细胞的进入。相同的突变体未能在Sf9细胞中形成噬菌斑,而是显示出单个细胞进入和最小的细胞间扩散,这与改变的融合表型一致。在不同昆虫细胞中生长的病毒显示出不同的哺乳动物细胞进入效率,这表明其他因素也控制着进入。

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