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Entry of the Two Infectious Forms of Vaccinia Virus at the Plasma Membane Is Signaling-Dependent for the IMV but Not the EEV

机译:牛痘病毒两种感染形式在质膜的进入对IMV信号依赖性但对EEV信号依赖性

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摘要

The simpler of the two infectious forms of vaccinia virus, the intracellular mature virus (IMV) is known to infect cells less efficiently than the extracellular enveloped virus (EEV), which is surrounded by an additional, TGN-derived membrane. We show here that when the IMV binds HeLa cells, it activates a signaling cascade that is regulated by the GTPase rac1 and rhoA, ezrin, and both tyrosine and protein kinase C phosphorylation. These cascades are linked to the formation of actin and ezrin containing protrusions at the plasma membrane that seem to be essential for the entry of IMV cores. The identical cores of the EEV also appear to enter at the cell surface, but surprisingly, without the need for signaling and actin/membrane rearrangements. Thus, in addition to its known role in wrapping the IMV and the formation of intracellular actin comets, the membrane of the EEV seems to have evolved the capacity to enter cells silently, without a need for signaling.
机译:牛痘病毒是两种感染形式中最简单的一种,细胞内成熟病毒(IMV)感染细胞的效率比细胞外被膜病毒(EEV)低,后者被附加的TGN衍生膜包围。我们在这里显示,当IMV结合HeLa细胞时,它会激活由GTPase rac1和rhoA,ezrin以及酪氨酸和蛋白激酶C磷酸化调节的信号级联。这些级联反应与质膜上含肌动蛋白和ezrin的突起有关,这些突起对于IMV核的进入似乎至关重要。 EEV的相同核心似乎也进入细胞表面,但令人惊讶的是,不需要信号传导和肌动蛋白/膜重排。因此,除了其在包裹IMV和细胞内肌动蛋白彗星形成中的已知作用外,EEV的膜似乎已经进化出无声进入细胞的能力,而无需发出信号。

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