Chaum Edward, Winborn Christina S, Bhattacharya Sujoy
Department of Ophthalmology, University of Tennessee Health Science Center, Memphis, TN, 38163, USA,
Mamm Genome. 2015 Jun;26(5-6):210-21. doi: 10.1007/s00335-015-9568-9. Epub 2015 May 12.
The tumor suppressor p53 is a major regulator of genes important for cell cycle arrest, senescence, apoptosis, and innate immunity, and has recently been implicated in retinal aging. In this study we sought to identify the genetic networks that regulate p53 function in the retina using quantitative trait locus (QTL) analysis. First we examined age-associated changes in the activation and expression levels of p53; known p53 target proteins and markers of innate immune system activation in primary retinal pigment epithelial (RPE) cells that were harvested from young and aged human donors. We observed increased expression of p53, activated caspase-1, CDKN1A, CDKN2A (p16INK4a), TLR4, and IFNα in aged primary RPE cell lines. We used the Hamilton Eye Institute (HEI) retinal dataset ( www.genenetwork.org ) to identify genomic loci that modulate expression of genes in the p53 pathway in recombinant inbred BXD mouse strains using a QTL systems biology-based approach. We identified a significant trans-QTL on chromosome 1 (region 172-177 Mb) that regulates the expression of Cdkn1a. Many of the genes in this QTL locus are involved in innate immune responses, including Fc receptors, interferon-inducible family genes, and formin 2. Importantly, we found an age-related increase in FCGR3A and FMN2 and a decrease in IFI16 levels in RPE cultures. There is a complex multigenic innate immunity locus that controls expression of genes in the p53 pathway in the RPE, which may play an important role in modulating age-related changes in the retina.
肿瘤抑制因子p53是细胞周期停滞、衰老、凋亡和固有免疫等重要相关基因的主要调节因子,最近其与视网膜衰老也有关联。在本研究中,我们试图通过数量性状基因座(QTL)分析来确定调节视网膜中p53功能的基因网络。首先,我们检测了从年轻和老年人类供体获取的原代视网膜色素上皮(RPE)细胞中p53的激活和表达水平、已知的p53靶蛋白以及固有免疫系统激活的标志物随年龄的变化。我们观察到老年原代RPE细胞系中p53、活化的半胱天冬酶-1、CDKN1A、CDKN2A(p16INK4a)、TLR4和IFNα的表达增加。我们使用汉密尔顿眼科研究所(HEI)的视网膜数据集(www.genenetwork.org),采用基于QTL系统生物学的方法,在重组近交BXD小鼠品系中鉴定调节p53通路中基因表达的基因组位点。我们在1号染色体(172 - 177 Mb区域)上鉴定出一个显著的反式QTL,其调节Cdkn1a的表达。该QTL位点中的许多基因都参与固有免疫反应,包括Fc受体、干扰素诱导家族基因和formin 2。重要的是,我们发现RPE培养物中FCGR3A和FMN2随年龄增加,IFI16水平降低。存在一个复杂的多基因固有免疫位点,其控制RPE中p53通路基因的表达,这可能在调节视网膜与年龄相关的变化中起重要作用。