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Introduction of the MDM2 T309G Mutation in Primary Human Retinal Epithelial Cells Enhances Experimental Proliferative Vitreoretinopathy

机译:在原代人视网膜上皮细胞中引入MDM2 T309G突变可增强实验性增殖性玻璃体视网膜病变

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Purpose: The murine double minute (MDM)2 is a critical negative regulator of the p53 tumor suppressor, and MDM2 SNP309G is associated with a higher risk of proliferative vitreoretinopathy (PVR); in addition, the MDM2 T309G created using clustered regularly interspaced short palindromic repeats (CRISPR)/associated endonuclease (Cas)9 enhances normal rabbit vitreous-induced expression of MDM2 and survival of primary human retinal pigment epithelial (hRPE) cells in vitro. The goal of this study was to determine whether this MDM2 T309G contributes to the development of experimental PVR. Methods: hRPE cells expressing MDM2 T309G or T309T only were treated with vitreous from human PVR donors (HV). The expression of MDM2 and p53 in the treated cells was examined by Western blot. The in vitro vitreous-induced cellular responses, such as contraction were assessed, and PVR was induced by intravitreal injection of the hRPE cells with MDM2 T309G or T309T only into rabbit eyes. Results: Western blot analyses indicated that treatment of hRPE cells with HV led to a significant increase (1.7 ?± 0.2-fold) in the expression of MDM2 and a significant decrease in p53 in the cells expressing MDM2 T309G compared with those with MDM2 T309T. In addition, HV promoted contraction of the hRPE cells expressing MDM2 T309G significantly more than those with MDM2 T309T only. Furthermore, MDM2 T309G in the hRPE cells enhanced the development of PVR in a rabbit model. Conclusions: The MDM2 SNP309 in RPE cells enhances their potential of PVR pathogenesis.
机译:目的:鼠类双分钟(MDM)2是p53肿瘤抑制因子的关键负调节剂,而MDM2 SNP309G与增生性玻璃体视网膜病变(PVR)的风险较高有关;此外,使用簇状规则间隔的短回文重复序列(CRISPR)/相关核酸内切酶(Cas)9创建的MDM2 T309G增强了正常玻璃体诱导的MDM2表达以及体外原代人视网膜色素上皮细胞(hRPE)的存活。这项研究的目的是确定这种MDM2 T309G是否有助于实验性PVR的发展。方法:用人PVR供体(HV)的玻璃体处理仅表达MDM2 T309G或T309T的hRPE细胞。通过Western印迹检查处理的细胞中MDM2和p53的表达。评估体外玻璃体诱导的细胞反应,例如收缩,并通过玻璃体腔内仅将hDMPE细胞与MDM2 T309G或T309T注射到兔眼中来诱导PVR。结果:Western印迹分析表明,与MDM2 T309T相比,HV处理hRPE细胞导致MDM2表达显着增加(1.7?±0.2倍),p53显着降低。另外,与仅具有MDM2 T309T的hRPE细胞相比,HV显着促进了表达MDM2 T309G的hRPE细胞的收缩。此外,hRPE细胞中的MDM2 T309G增强了兔模型中PVR的发育。结论:RPE细胞中的MDM2 SNP309增强了其PVR发病机理的潜力。

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