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Rotavirus-Induced Early Activation of the RhoA/ROCK/MLC Signaling Pathway Mediates the Disruption of Tight Junctions in Polarized MDCK Cells

机译:轮状病毒诱导的RhoA / ROCK / MLC信号通路的早期激活介导极化MDCK细胞中紧密连接的破坏。

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摘要

Intestinal epithelial tight junctions (TJ) are a major barrier restricting the entry of various harmful factors including pathogens; however, they also represent an important entry portal for pathogens. Although the rotavirus-induced early disruption of TJ integrity and targeting of TJ proteins as coreceptors are well-defined, the precise molecular mechanisms involved remain unknown. In the present study, infection of polarized MDCK cells with the species A rotavirus (RVA) strains human DS-1 and bovine NCDV induced a redistribution of TJ proteins into the cytoplasm, a reversible decrease in transepithelial resistance, and an increase in paracellular permeability. RhoA/ROCK/MLC signaling was identified as activated at an early stage of infection, while inhibition of this pathway prevented the rotavirus-induced early disruption of TJ integrity and alteration of TJ protein distribution. Activation of pMYPT, PKC, or MLCK, which are known to participate in TJ dissociation, was not observed in MDCK cells infected with either rotavirus strain. Our data demonstrated that binding of RVA virions or cogent VP8* proteins to cellular receptors activates RhoA/ROCK/MLC signaling, which alters TJ protein distribution and disrupts TJ integrity via contraction of the perijunctional actomyosin ring, facilitating virion access to coreceptors and entry into cells.
机译:肠上皮紧密连接(TJ)是限制各种有害因素(包括病原体)进入的主要障碍。但是,它们也代表了病原体的重要入口门户。尽管轮状病毒诱导的TJ完整性的早期破坏和以TJ蛋白作为共受体的靶向作用已得到明确定义,但所涉及的确切分子机制仍然未知。在本研究中,用人类DS-1和牛NCDV物种A轮状病毒(RVA)感染极化的MDCK细胞会诱导TJ蛋白重新分布到细胞质中,跨上皮抵抗力可逆降低,并增加细胞旁通透性。 RhoA / ROCK / MLC信号转导被确定为在感染的早期被激活,而该途径的抑制阻止了轮状病毒引起的TJ完整性的早期破坏和TJ蛋白分布的改变。在被任一轮状病毒株感染的MDCK细胞中未观察到已知参与TJ解离的pMYPT,PKC或MLCK的激活。我们的数据表明,RVA病毒体或有力的VP8 *蛋白与细胞受体的结合会激活RhoA / ROCK / MLC信号传导,从而改变TJ蛋白的分布并通过结缔组织周围的肌动球蛋白环的收缩破坏TJ的完整性,从而促进病毒体进入共受体并进入细胞。

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