Ophthalmo-Immunology Unit, University Medical Center Utrecht, Utrecht University, Utrecht, The Netherlands.
Department of Ophthalmology, University Medical Center Utrecht, Utrecht University, Utrecht, The Netherlands.
Invest Ophthalmol Vis Sci. 2018 Feb 1;59(2):878-888. doi: 10.1167/iovs.17-23643.
The cause of noninfectious uveitis (NIU) is poorly understood but is considered to be mediated by a complex interplay between genetic, environmental, and-relatively unexplored-epigenetic factors. MicroRNAs (miRNAs) are noncoding small RNAs that are important epigenetic regulators implicated in pathologic signaling. Therefore, we mapped the circulating miRNA-ome of NIU patients and studied miRNA perturbations within the broader context of the immune system.
We designed a strategy to robustly identify changes in the miRNA profiles of two independent cohorts totaling 54 untreated patients with active and eye-restricted disease and 26 age-matched controls. High-resolution miRNA-ome data were obtained by TaqMan OpenArray technology and subsequent RT-qPCR. Flow cytometry data, and proteomic data spanning the cellular immune system, were used to map the uveitis-miRNA signature to changes in the composition of specific leukocyte subsets in blood.
Using stringent selection criteria, we identified and independently validated an miRNA cluster that is associated with NIU. Pathway enrichment analysis for genes targeted by this cluster revealed significant enrichment for the PI3K/Akt, MAPK, FOXO, and VEGF signaling pathways, and photoreceptor development. In addition, unsupervised multidomain analyses linked the presence of the uveitis-associated miRNA cluster to a different composition of leukocyte subsets, more specifically, CD16+CD11c+HLA-DR- cells.
Together, this study identified a unique miRNA cluster associated with NIU that was related to changes in leukocyte subsets demonstrating systemic changes in epigenetic regulation underlying NIU.
非感染性葡萄膜炎(NIU)的病因尚不清楚,但被认为是遗传、环境和(相对未探索的)表观遗传因素之间复杂相互作用的结果。微小 RNA(miRNA)是重要的表观遗传调控因子,参与病理信号转导,是非编码的小分子 RNA。因此,我们对 NIU 患者的循环 miRNA 组进行了作图,并在更广泛的免疫系统背景下研究了 miRNA 失调。
我们设计了一种策略,以稳健地识别两个独立队列中 miRNA 图谱的变化,两个队列共有 54 名未经治疗的活动期和眼部局限疾病患者和 26 名年龄匹配的对照。通过 TaqMan OpenArray 技术和随后的 RT-qPCR 获得高分辨率 miRNA 组学数据。流式细胞术数据和涵盖细胞免疫系统的蛋白质组学数据用于将葡萄膜炎 miRNA 特征映射到血液中特定白细胞亚群组成的变化。
使用严格的选择标准,我们鉴定并独立验证了与 NIU 相关的 miRNA 簇。该簇靶向基因的通路富集分析显示,PI3K/Akt、MAPK、FOXO 和 VEGF 信号通路以及光感受器发育显著富集。此外,无监督多维分析将与葡萄膜炎相关的 miRNA 簇的存在与白细胞亚群的不同组成联系起来,更具体地说,与 CD16+CD11c+HLA-DR-细胞有关。
总之,这项研究确定了与 NIU 相关的独特 miRNA 簇,与白细胞亚群的变化有关,表明 NIU 中表观遗传调控的系统性变化。