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LncRNA ZNF503-AS1 promotes RPE differentiation by downregulating ZNF503 expression

机译:LncRNA ZNF503-AS1 通过下调 ZNF503 表达来促进RPE分化

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摘要

Long noncoding RNAs (lncRNAs) have important roles in various biological processes. Our previous work has revealed that dedifferentiation of retinal pigment epithelium (RPE) cells contributes to the pathology of age-related macular degeneration (AMD). Herein, we show roles of lncRNAs in RPE differentiation. We used microarray to identify lncRNA expression profiles in human induced pluripotent stem cells (hiPSCs) and hiPSC-derived RPE cells. A total of 217 differentially expressed lncRNAs along with the differentiation were initially identified, among which 13 lncRNAs showed a consistent fold change of over 2. LncRNA ZNF503-AS1 , located in the cytoplasm of RPE cells, was found consistently upregulated along with RPE differentiation, and downregulated in the RPE-choroid of AMD patients. In vitro study further suggested that ZNF503-AS1 insufficiency could inhibit RPE differentiation, and promote its proliferation and migration. As ZNF503-AS1 is transcribed from the antisense strand of the ZNF503 gene locus, we further revealed its regulatory role in ZNF503 expression. ZNF503-AS1 was reversely correlated with ZNF503 expression. Our results also suggested that ZNF503 could inhibit RPE differentiation, and promote its proliferation and migration. Thus, ZNF503-AS1 potentially promotes RPE differentiation through downregulation of ZNF503 expression. In addition, nuclear factor- κ B was recognized as a potential upstream transcript factor for ZNF503-AS1 , which might participate in promoting RPE differentiation by regulating the expression of ZNF503-AS1 . Taken together, our study identifies a group of RPE differentiation relevant lncRNAs, and the potential role of ZNF503-AS1 in the pathology of atrophic AMD, which might help with the intervention of AMD patients.
机译:长的非编码RNA(lncRNA)在各种生物学过程中都具有重要作用。我们以前的工作表明,视网膜色素上皮细胞(RPE)的去分化促进了年龄相关性黄斑变性(AMD)的病理。在本文中,我们显示了lncRNA在RPE分化中的作用。我们使用微阵列来鉴定人诱导的多能干细胞(hiPSC)和hiPSC衍生的RPE细胞中的lncRNA表达谱。最初鉴定出总共217个差异表达的lncRNA,并且其中的13个lncRNA的折叠倍数变化超过2。位于RPE细胞质中的LncRNA ZNF503-AS1与RPE分化一致地被上调,并在AMD患者的RPE脉络膜中下调。体外研究进一步表明,ZNF503-AS1功能不足可抑制RPE分化,并促进其增殖和迁移。由于ZNF503-AS1是从ZNF503基因位点的反义链转录而来的,因此我们进一步揭示了其在ZNF503表达中的调控作用。 ZNF503-AS1与ZNF503表达反向相关。我们的结果还表明ZNF503可以抑制RPE分化,并促进其增殖和迁移。因此,ZNF503-AS1可能通过下调ZNF503表达来促进RPE分化。另外,核因子κB被认为是ZNF503-AS1的潜在上游转录因子,其可能通过调节ZNF503-AS1的表达参与促进RPE分化。两者合计,我们的研究确定了一组RPE分化相关的lncRNA,以及ZNF503-AS1在萎缩性AMD病理中的潜在作用,这可能有助于干预AMD患者。

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