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Identification of functional networks associated with cell death in the retina of OXYS rats during the development of retinopathy

机译:识别与OXYS大鼠视网膜病变过程中视网膜细胞死亡相关的功能网络

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摘要

Age-related macular degeneration (AMD) is a major cause of blindness in developed countries, and the molecular pathogenesis of early events in AMD is poorly understood. Senescence-accelerated OXYS rats develop AMD-like retinopathy. The aim of this study was to explore the differences in retinal gene expression between OXYS and Wistar (control) rats at age 20 d and to identify the pathways of retinal cell death involved in the OXYS retinopathy initiation and progression. Retinal mRNA profiles of 20-day-old OXYS and Wistar rats were generated at the sequencing read depth 40 mln, in triplicate, using Illumina GAIIx. A terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate nick end labeling (TUNEL) assay was performed to measure the apoptosis level. GeneMANIA was used to construct interaction networks for differentially expressed (DE) apoptosis-related genes at ages 20 d and 3 and 18 months. Functional analysis was suggestive of a developmental process, signal transduction, and cell differentiation as the most enriched biological processes among 245 DE genes at age 20 d An increased level of apoptosis was observed in OXYS rats at age 20 d but not at advanced stages. We identified functional clusters in the constructed interaction networks and possible hub genes (Rasa1, cFLAR, Birc3, Cdk1, Hspa1b, Erbb3, and Ntf3). We also demonstrated the significance of the extrinsic apoptotic pathway at preclinical, early, and advanced stages of retinopathy development. Besides the cell death signaling pathways, immune system-related processes and lipid-metabolic processes showed overrepresentation in the clusters of all networks. These characteristics of the expression profile of the genes functionally associated with apoptosis may contribute to the pathogenesis of AMD-like retinopathy in senescence-accelerated OXYS rats.
机译:与年龄有关的黄斑变性(AMD)是发达国家失明的主要原因,人们对AMD早期事件的分子发病机理了解甚少。衰老加速的OXYS大鼠发展为AMD样视网膜病变。这项研究的目的是探讨20岁时OXYS和Wistar(对照)大鼠之间视网膜基因表达的差异,并确定参与OXYS视网膜病变的发生和发展的视网膜细胞死亡的途径。使用Illumina GAIIx,在40百万的测序读取深度处,生成了20天大的OXYS和Wistar大鼠的视网膜mRNA谱图,一式三份。进行末端脱氧核苷酸转移酶介导的脱氧尿苷三磷酸缺口末端标记(TUNEL)测定以测量细胞凋亡水平。 GeneMANIA用于构建20岁,3个月和18个月时差异表达(DE)细胞凋亡相关基因的相互作用网络。功能分析表明20岁时245个DE基因中发育过程,信号转导和细胞分化是最丰富的生物学过程。在20岁时的OXYS大鼠中观察到凋亡水平升高,但未达到晚期。我们在构建的相互作用网络和可能的中心基因(Rasa1,cFLAR,Birc3,Cdk1,Hspa1b,Erbb3和Ntf3)中确定功能簇。我们还证明了在视网膜病变发展的临床前,早期和晚期阶段外源性凋亡途径的重要性。除细胞死亡信号传导途径外,免疫系统相关过程和脂质代谢过程在所有网络的簇中均表现出过高的代表性。功能性与凋亡相关的基因表达谱的这些特征可能有助于衰老加速的OXYS大鼠中AMD样视网膜病变的发病机理。

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