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Chromatin accessibility landscape of articular knee cartilage reveals aberrant enhancer regulation in osteoarthritis

机译:关节软骨的染色质可及性景观揭示了骨关节炎的异常增强剂调节

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摘要

Osteoarthritis (OA) is a common joint disorder with increasing impact in an aging society. While genetic and transcriptomic analyses have revealed some genes and non-coding loci associated to OA, the pathogenesis remains incompletely understood. Chromatin profiling, which provides insight into gene regulation, has not been reported in OA mainly due to technical difficulties. Here, we employed Assay for Transposase-Accessible Chromatin with high throughput sequencing (ATAC-seq) to map the accessible chromatin landscape in articular knee cartilage of OA patients. We identified 109,215 accessible chromatin regions for cartilages, of which 71% were annotated as enhancers. By overlaying them with genetic and DNA methylation data, we have determined potential OA-relevant enhancers and their putative target genes. Furthermore, through integration with RNA-seq data, we characterized genes that are altered both at epigenomic and transcriptomic levels in OA. These genes are enriched in pathways regulating ossification and mesenchymal stem cell (MSC) differentiation. Consistently, the differentially accessible regions in OA are enriched for MSC-specific enhancers and motifs of transcription factor families involved in osteoblast differentiation. In conclusion, we demonstrate how direct chromatin profiling of clinical tissues can provide comprehensive epigenetic information for a disease and suggest candidate genes and enhancers of translational potential.
机译:骨关节炎(OA)是一种常见的关节疾病,在老龄化社会中影响越来越大。尽管遗传和转录组学分析已经揭示了一些与OA相关的基因和非编码基因座,但其发病机理仍不完全清楚。主要由于技术困难,尚未在OA中报道可提供基因调控见解的染色质分析。在这里,我们采用高通量测序(ATAC-seq)进行了转座酶可及染色质测定,以绘制OA患者膝关节软骨中可及的染色质分布图。我们确定了109,215个可访问的染色质区域用于软骨,其中71%被标记为增强子。通过将它们与遗传和DNA甲基化数据相叠加,我们确定了潜在的OA相关增强子及其推定的靶基因。此外,通过与RNA-seq数据整合,我们表征了在OA中在表观基因组和转录组水平上均发生改变的基因。这些基因富含调节骨化和间充质干细胞(MSC)分化的途径。一致地,OA中的差异可及区域富含MSC特异性增强子和成骨细胞分化所涉及的转录因子家族的基序。总之,我们证明了临床组织的直接染色质谱分析如何为疾病提供全面的表观遗传信息,并提出了候选基因和翻译潜能的增强子。

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