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骨关节炎髋关节骨赘和成软骨细胞之间广泛的表观基因组学、转录组学和蛋白质组学差异。

Widespread epigenomic, transcriptomic and proteomic differences between hip osteophytic and articular chondrocytes in osteoarthritis.

机构信息

Wellcome Trust Sanger Institute, Wellcome Trust Genome Campus, Cambridge, UK.

Cancer Research Division, Cancer Council NSW, Sydney, NSW, Australia.

出版信息

Rheumatology (Oxford). 2018 Aug 1;57(8):1481-1489. doi: 10.1093/rheumatology/key101.

Abstract

OBJECTIVES

To identify molecular differences between chondrocytes from osteophytic and articular cartilage tissue from OA patients.

METHODS

We investigated genes and pathways by combining genome-wide DNA methylation, RNA sequencing and quantitative proteomics in isolated primary chondrocytes from the cartilaginous layer of osteophytes and matched areas of low- and high-grade articular cartilage across nine patients with OA undergoing hip replacement surgery.

RESULTS

Chondrocytes from osteophytic cartilage showed widespread differences to low-grade articular cartilage chondrocytes. These differences were similar to, but more pronounced than, differences between chondrocytes from osteophytic and high-grade articular cartilage, and more pronounced than differences between high- and low-grade articular cartilage. We identified 56 genes with significant differences between osteophytic chondrocytes and low-grade articular cartilage chondrocytes on all three omics levels. Several of these genes have known roles in OA, including ALDH1A2 and cartilage oligomeric matrix protein, which have functional genetic variants associated with OA from genome-wide association studies. An integrative gene ontology enrichment analysis showed that differences between osteophytic and low-grade articular cartilage chondrocytes are associated with extracellular matrix organization, skeletal system development, platelet aggregation and regulation of ERK1 and ERK2 cascade.

CONCLUSION

We present a first comprehensive view of the molecular landscape of chondrocytes from osteophytic cartilage as compared with articular cartilage chondrocytes from the same joints in OA. We found robust changes at genes relevant to chondrocyte function, providing insight into biological processes involved in osteophyte development and thus OA progression.

摘要

目的

鉴定骨赘和 OA 患者关节软骨组织中软骨细胞的分子差异。

方法

我们通过对来自 OA 髋关节置换手术患者的骨赘软骨层和匹配的低级别和高级别关节软骨的分离原代软骨细胞进行全基因组 DNA 甲基化、RNA 测序和定量蛋白质组学联合研究,来调查基因和通路。

结果

骨赘软骨中的软骨细胞与低级别关节软骨中的软骨细胞存在广泛差异。这些差异与骨赘软骨和高级别关节软骨之间的差异相似,但更明显,并且比高级别和低级别关节软骨之间的差异更明显。我们在所有三个组学水平上确定了 56 个在骨赘软骨细胞和低级别关节软骨细胞之间存在显著差异的基因。其中一些基因在 OA 中具有已知作用,包括 ALDH1A2 和软骨寡聚基质蛋白,它们在全基因组关联研究中具有与 OA 相关的功能性遗传变异。综合基因本体富集分析表明,骨赘和低级别关节软骨软骨细胞之间的差异与细胞外基质组织、骨骼系统发育、血小板聚集以及 ERK1 和 ERK2 级联的调节有关。

结论

我们首次全面比较了 OA 关节中骨赘软骨和关节软骨细胞的分子图谱。我们在与软骨细胞功能相关的基因上发现了强大的变化,为骨赘发育和 OA 进展所涉及的生物学过程提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce34/6055583/c66dc934b892/key101f1.jpg

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