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Porcine sapovirus Cowden strain enters LLC-PK cells via clathrin- and cholesterol-dependent endocytosis with the requirement of dynamin II

机译:猪Sapovirus Cowden菌株通过Clathrin-和胆固醇依赖性内吞作用进入LLC-PK细胞,随着Dynamin II的要求

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摘要

Abstract Caliciviruses in the genus Sapovirus are a significant cause of viral gastroenteritis in humans and animals. However, the mechanism of their entry into cells is not well characterized. Here, we determined the entry mechanism of porcine sapovirus (PSaV) strain Cowden into permissive LLC-PK cells. The inhibition of clathrin-mediated endocytosis using chlorpromazine, siRNAs, and a dominant negative (DN) mutant blocked entry and infection of PSaV Cowden strain, confirming a role for clathrin-mediated internalization. Entry and infection were also inhibited by the cholesterol-sequestering drug methyl-β-cyclodextrin and was restored by the addition of soluble cholesterol, indicating that cholesterol also contributes to entry and infection of this strain. Furthermore, the inhibition of dynamin GTPase activity by dynasore, siRNA depletion of dynamin II, or overexpression of a DN mutant of dynamin II reduced the entry and infection, suggesting that dynamin mediates the fission and detachment of clathrin- and cholesterol-pits for entry of this strain. In contrast, the inhibition of caveolae-mediated endocytosis using nystatin, siRNAs, or a DN mutant had no inhibitory effect on entry and infection of this strain. It was further determined that cell entry of PSaV Cowden strain required actin rearrangements for vesicle internalization, endosomal trafficking from early to late endosomes through microtubules, and late endosomal acidification for uncoating. We conclude that PSaV strain Cowden is internalized into LLC-PK cells by clathrin- and cholesterol-mediated endocytosis that requires dynamin II and actin rearrangement, and that the uncoating occurs in the acidified late endosomes after trafficking from the early endosomes through microtubules.
机译:在Sapovirus属中的抽象裂殖丝是人类和动物病毒性胃肠炎的重要原因。然而,它们进入细胞的机制并不具备很好的表征。在这里,我们确定了猪鞘瘤(PSAV)菌株Cowden进入杂种LLC-PK细胞的进入机制。使用氯丙嗪,siRNA和显性负(DN)突变物抑制克拉仑介导的内吞作用抑制蛋白突然(DN)抑制蛋白牛仔菌株的进入和感染,证实了克拉族介导介导的内化的作用。进入和感染也被胆固醇螯合药物甲基-β-环糊精抑制,并通过加入可溶性胆固醇恢复,表明胆固醇还有助于进入和感染这种菌株。此外,Dynasore的DynoIn GTP酶活性的抑制,Dynam II的Dynin II或DN突变体的过表达降低了进入和感染,表明Dynamin介导Clathrin-和胆固醇坑的裂变和脱离这种菌株。相反,使用乳腺癌,siRNA或DN突变体对Caveolae介导的内吞作用的抑制对该菌株的进入和感染没有抑制作用。进一步确定了PSAV Cowden菌株的细胞进入需要肌动蛋白的内化,从早期到晚期内体通过微管,以及用于未涂覆的晚期内体酸化的内体贩运。我们得出结论,通过Clathrin-和胆固醇介导的内吞作用,CAAV菌株Cowden内化为LLC-PK细胞,所述内吞作用,所述内吞作用,所述内吞作用,所述内吞作用,所述内吞作用,并且所述在通过微管造成早期所述底物之后,所述未涂层发生在酸化后的底皮中。

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