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首页> 外文期刊>Investigative ophthalmology & visual science >Rewiring Integrin-Mediated Signaling and Cellular Response with the Peripheral Myelin Protein 22 and Epithelial Membrane Protein 2 Components of the Tetraspan Web
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Rewiring Integrin-Mediated Signaling and Cellular Response with the Peripheral Myelin Protein 22 and Epithelial Membrane Protein 2 Components of the Tetraspan Web

机译:用Tetraspan Web的外周髓磷脂蛋白22和上皮膜蛋白2组分重新整合整合素介导的信号和细胞应答

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摘要

Purpose.: Integrin-mediated collagen gel contraction by ARPE-19 is an in vitro model for proliferative vitreoretinopathy (PVR), an aberrant wound healing response after retinal detachment or ocular trauma. Expression of the tetraspan protein epithelial membrane protein 2 (EMP2) controls gel contraction through FAK activation. Peripheral myelin protein 22 (PMP22), another member of the tetraspan web, is closely related to EMP2. The purpose of this study was to determine whether PMP22 also controls the contractile phase associated with PVR. Methods.: Integrin expression, adhesion, and protein expression were assessed, respectively, through flow cytometry, binding to collagen types I and IV, and Western blot analysis. Collagen gel contraction was assessed using an in vitro assay. Results.: Overexpression of PMP22 in ARPE-19 cells (ARPE-19/PMP22) resulted in increased collagen adhesion. Gel contraction, however, was reduced by greater than 50% in ARPE-19/PMP22 cells (P 0.001). In contrast to the FAK activation observed by increasing EMP2 expression, PMP22 overexpression led to increased AKT activation. The decrease in gel contraction by the ARPE-19/PMP22 cells was partially reversed through either PMP22 siRNA or by blockade of AKT. Conclusions.: Relative expression of EMP2 or PMP22 within the tetraspan web drives a cellular response toward a FAK- or AKT-dependent pathway, respectively. EMP2 and PMP22 differentially regulate collagen gel contraction in the ARPE-19 cell line. The implication of this finding adds a new dimension to the concept of the tetraspan web, in which the abundance of individual tetraspan family members differentially regulates signal transduction and the downstream cellular response.
机译:目的:ARPE-19整合素介导的胶原蛋白凝胶收缩是增殖性玻璃体视网膜病变(PVR)的体外模型,视网膜脱离或眼外伤后出现异常的伤口愈合反应。四跨度蛋白上皮膜蛋白2(EMP2)的表达通过FAK激活控制凝胶收缩。四跨膜网的另一成员,外周髓磷脂蛋白22(PMP22)与EMP2密切相关。这项研究的目的是确定PMP22是否也控制与PVR相关的收缩期。方法:通过流式细胞术,结合I型和IV型胶原以及Western印迹分析分别评估整联蛋白的表达,粘附和蛋白表达。使用体外测定评估胶原凝胶的收缩。结果:ARPE-19细胞中过表达PMP22(ARPE-19 / PMP22)导致胶原粘附增加。但是,ARPE-19 / PMP22细胞的凝胶收缩减少了50%以上(P <0.001)。与通过增加EMP2表达观察到的FAK激活相反,PMP22过表达导致AKT激活增加。通过PMP22 siRNA或AKT的阻断,可以逆转ARPE-19 / PMP22细胞引起的凝胶收缩的减少。结论:四跨网中EMP2或PMP22的相对表达分别驱动细胞对FAK或AKT依赖性途径的应答。 EMP2和PMP22在ARPE-19细胞系中差异调节胶原凝胶的收缩。这一发现的含义为四跨网的概念增加了新的维度,其中,四跨家族成员的丰富差异地调节信号传导和下游细胞反应。

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