4.7 Article

Genome-Wide Differentially Methylated Region Analysis to Reveal Epigenetic Differences of Articular Cartilage in Kashin-Beck Disease and Osteoarthritis

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FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2021.636291

关键词

differentially methylated region; Kashin– Beck disease; osteoarthritis; articular cartilage; DNA methylation; cartilage

资金

  1. National Natural Science Foundation of China [61902319]
  2. Natural Science Foundation of Shaanxi Province [2019JQ127]

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Kashin-Beck disease (KBD) and osteoarthritis (OA) exhibit significant differences in molecular mechanisms, with KBD-associated DMRs having a higher proportion than OA-associated DMRs, and genes related to cartilage/skeletal processes are enriched in skeletal system and limb-associated pathways.
Kashin-Beck disease (KBD) is a degenerative osteoarticular disorder, and displays the significant differences with osteoarthritis (OA) regarding the etiology and molecular changes in articular cartilage. However, the underlying dysfunctions of molecular mechanisms in KBD and OA remain unclear. Here, we primarily performed the various genome-wide differential methylation analyses to reveal the distinct differentially methylated regions (DMRs) in conjunction with corresponding differentially methylated genes (DMGs), and enriched functional pathways in KBD and OA. We identified a total of 131 DMRs in KBD vs. Control, and 58 DMRs in OA vs. Controls, and the results demonstrate that many interesting DMRs are linked to DMGs, such as SMOC2 and HOXD3, which are all key genes to regulate cartilage/skeletal physiologic and pathologic process, and are further enriched in skeletal system and limb-associated pathways. Our DMR analysis indicates that KBD-associated DMRs has higher proportion than OA-associated DMRs in gene body regions. KBD-associated DMGs were enriched in wounding and coagulation-related functional pathways that may be stimulated by trace elements. The identified molecular features provide novel clues for understanding the pathogenetic and therapeutic studies of both KBD and OA.

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