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首页> 外文期刊>PLoS Pathogens >CIB1 Synergizes with EphrinA2 to Regulate Kaposi's Sarcoma-Associated Herpesvirus Macropinocytic Entry in Human Microvascular Dermal Endothelial Cells
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CIB1 Synergizes with EphrinA2 to Regulate Kaposi's Sarcoma-Associated Herpesvirus Macropinocytic Entry in Human Microvascular Dermal Endothelial Cells

机译:CIB1与EphrinA2协同调节人微血管皮肤内皮细胞中卡波西氏肉瘤相关的疱疹病毒大球胞菌进入。

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摘要

KSHV envelope glycoproteins interact with cell surface heparan sulfate and integrins, and activate FAK, Src, PI3-K, c-Cbl, and Rho-GTPase signal molecules in human microvascular dermal endothelial (HMVEC-d) cells. c-Cbl mediates the translocation of virus bound α3β1 and αVβ3 integrins into lipid rafts (LRs), where KSHV interacts and activates EphrinA2 (EphA2). EphA2 associates with c-Cbl-myosin IIA and augmented KSHV-induced Src and PI3-K signals in LRs, leading to bleb formation and macropinocytosis of KSHV. To identify the factor(s) coordinating the EphA2-signal complex, the role of CIB1 (calcium and integrin binding protein-1) associated with integrin signaling was analyzed. CIB1 knockdown did not affect KSHV binding to HMVEC-d cells but significantly reduced its entry and gene expression. In contrast, CIB1 overexpression increased KSHV entry in 293 cells. Single virus particle infection and trafficking during HMVEC-d cell entry was examined by utilizing DiI (envelope) and BrdU (viral DNA) labeled virus. CIB1 was associated with KSHV in membrane blebs and in Rab5 positive macropinocytic vesicles. CIB1 knockdown abrogated virus induced blebs, macropinocytosis and virus association with the Rab5 macropinosome. Infection increased the association of CIB1 with LRs, and CIB1 was associated with EphA2 and KSHV entry associated signal molecules such as Src, PI3-K, and c-Cbl. CIB1 knockdown significantly reduced the infection induced EphA2, Src and Erk1/2 activation. Mass spectrometry revealed the simultaneous association of CIB1 and EphA2 with the actin cytoskeleton modulating myosin IIA and alpha-actinin 4 molecules, and CIB1 knockdown reduced EphA2's association with myosin IIA and alpha-actinin 4. Collectively, these studies revealed for the first time that CIB1 plays a role in virus entry and macropinocytosis, and suggested that KSHV utilizes CIB1 as one of the key molecule(s) to coordinate and sustain the EphA2 mediated signaling involved in its entry, and CIB1 is an attractive therapeutic target to block KSHV infection.
机译:KSHV包膜糖蛋白与细胞表面硫酸乙酰肝素和整合素相互作用,并激活人微血管真皮内皮(HMVEC-d)细胞中的FAK,Src,PI3-K,c-Cbl和Rho-GTPase信号分子。 c-Cbl介导病毒结合的α3β1和αVβ3整合素易位到脂质筏(LRs)中,在那里KSHV相互作用并激活EphrinA2(EphA2)。 EphA2与c-Cbl-肌球蛋白IIA缔合,并在LR中增强了KSHV诱导的Src和PI3-K信号,导致了KSHV的气泡形成和巨胞吞作用。为了确定协调EphA2-信号复合物的因素,分析了与整联蛋白信号转导相关的CIB1(钙和整联蛋白结合蛋白-1)的作用。 CIB1敲低并不影响KSHV绑定到HMVEC-d细胞,但大大减少其进入和基因表达。相反,CIB1过表达增加了293细胞中KSHV的进入。通过利用DiI(信封)和BrdU(病毒DNA)标记的病毒检查了HMVEC-d细胞进入期间的单个病毒颗粒感染和运输。 CIB1与膜泡和Rab5阳性大泡胞囊泡中的KSHV相关。 CIB1敲低废除病毒诱导的起泡,巨胞饮作用以及病毒与Rab5巨胞体的关联。感染增加了CIB1与LR的关联,而CIB1与EphA2和KSHV进入相关的信号分子(例如Src,PI3-K和c-Cbl)相关。 CIB1组合式大大降低了感染诱导的EphA2,Src和Erk1 / 2激活。质谱分析显示CIB1和EphA2与肌动蛋白细胞骨架调节肌球蛋白IIA和α-肌动蛋白4分子同时缔合,而CIB1敲低降低了EphA2与肌球蛋白IIA和α-肌动蛋白4缔合。在病毒进入和巨噬细胞增多中发挥作用,并建议KSHV利用CIB1作为协调和维持参与其进入的EphA2介导的信号传导的关键分子之一,而CIB1是阻断KSHV感染的有吸引力的治疗靶标。

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