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Peste des Petits Ruminants Virus Enters Caprine Endometrial Epithelial Cells via the Caveolae-Mediated Endocytosis Pathway

机译:小反刍兽疫病毒通过小窝介导的内吞作用途径进入山羊子宫内膜上皮细胞

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摘要

Peste des petits ruminants virus (PPRV) causes an acute and highly contagious disease of sheep and goats and has spread with alarming speed around the world. The pathology of Peste des petits ruminants is linked to retrogressive changes and necrotic lesions in lymphoid tissues and epithelial cells. However, the process of PPRV entry into host epithelial cells remains largely unknown. Here, we performed a comprehensive study of the entry mechanism of PPRV into caprine endometrial epithelial cells (EECs). We clearly demonstrated that PPRV internalization was inhibited by chloroquine and ammonium chloride, which elevate the pH of various organelles. However, PPRV entry was not affected by chlorpromazine and knockdown of the clathrin heavy chain in EECs. In addition, we found that the internalization of PPRV was dependent on dynamin and membrane cholesterol and was suppressed by silencing of caveolin-1. Macropinocytosis did not play a role, but phosphatidylinositol 3-kinase (PI3K) was required for PPRV internalization. Cell type and receptor-dependent differences indicated that PPRV entry into caprine fetal fibroblast cells (FFCs) occurred via a different route. Taken together, our findings demonstrate that PPRV enters EECs through a cholesterol-dependent caveolae-mediated uptake mechanism that is pH-dependent and requires dynamin and PI3K but is independent of clathrin. This potentially provides insight into the entry mechanisms of other morbilliviruses.
机译:小反刍兽疫病毒(PPRV)引起绵羊和山羊的急性和高度传染性疾病,并以惊人的速度在世界范围内传播。小反刍动物的病理学与淋巴组织和上皮细胞的退行性变化和坏死病变有关。但是,PPRV进入宿主上皮细胞的过程仍然未知。在这里,我们对PPRV进入小鼠子宫内膜上皮细胞(EECs)的进入机制进行了全面的研究。我们清楚地证明,氯喹和氯化铵会抑制PPRV的内在化,从而提高各种细胞器的pH。然而,PPRV的进入不受氯丙嗪的影响以及EECs中网格蛋白重链的敲低。此外,我们发现PPRV的内在依赖于动力和膜胆固醇,并被Caveolin-1沉默抑制。巨胞饮作用不起作用,但是PPRV内化需要磷脂酰肌醇3-激酶(PI3K)。细胞类型和受体依赖性差异表明PPRV通过不同途径进入山羊胎儿成纤维细胞(FFC)。两者合计,我们的研究结果表明PPRV通过胆固醇依赖性小窝介导的摄取机制进入EECs,该机制是pH依赖性的,需要动力蛋白和PI3K,但不依赖网格蛋白。这潜在地提供了对其他麻疹病毒进入机制的了解。

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