Heparan Sulfate Deficiency in Cartilage: Enhanced BMP-Sensitivity, Proteoglycan Production and an Anti-Apoptotic Expression Signature after Loading.
軟骨におけるヘパラン硫酸欠乏:負荷後のBMP感受性亢進、プロテオグリカン産生増加、抗アポトーシス発現シグネチャー (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- その他の原著論文
- 対象
- 動物
- 出版年
- 2021
- 出典
- doi.org
- 抄録の表示
- 表示あり
- 出版状態
- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/04
- 鮮度
- 確認期限内
- 確認段階
- 自動処理
- 記録状態
- 公開
日本語要約(機械生成)
変形性関節症は世界的な障害原因であり、軟骨細胞外基質の変性が進行する。ヘパラン硫酸(HS)含量の低下が関節不安定化モデルで軟骨を保護することが示されたが、その機構は不明であった。本研究では、HS合成酵素Ext1の低形態対立遺伝子を持つマウス肋軟骨細胞から組織工学軟骨を作製し、周期的圧縮負荷に対する応答を解析した。HS欠乏軟骨細胞ではExt1 mRNAが野生型の3-6%に減少し、GAG/DNAが50%増加した。TGFβとFGF2への応答は正常だったが、BMP刺激への応答が亢進した。負荷によりERKとP38シグナルは同様に活性化し、共通の遺伝子発現変化に加え、HS欠乏軟骨のみで抗アポトーシス関連の発現シグネチャーが認められ、Bnip3の低下が選択的に見られた。HS欠乏はBMP感受性亢進、GAG産生増加、負荷後の抗アポトーシス発現を誘導し、軟骨保護に寄与する可能性が示唆された。
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抄録
Osteoarthritis (OA) represents one major cause of disability worldwide still evading efficient pharmacological or cellular therapies. Severe degeneration of extracellular cartilage matrix precedes the loss of mobility and disabling pain perception in affected joints. Recent studies showed that a reduced heparan sulfate (HS) content protects cartilage from degradation in OA-animal models of joint destabilization but the underlying mechanisms remained unclear. We aimed to clarify whether low HS-content alters the mechano-response of chondrocytes and to uncover pathways relevant for HS-related chondro-protection in response to loading. Tissue-engineered cartilage with HS-deficiency was generated from rib chondrocytes of mice carrying a hypomorphic allele of Exostosin 1 (Ext1), one of the main HS-synthesizing enzymes, and wildtype (WT) littermate controls. Engineered cartilage matured for 2 weeks was exposed to cyclic unconfined compression in a bioreactor. The molecular loading response was determined by transcriptome profiling, bioinformatic data processing, and qPCR. HS-deficient chondrocytes expressed 3-6% of WT Ext1-mRNA levels. Both groups similarly raised Sox9, Col2a1 and Acan levels during maturation. However, HS-deficient chondrocytes synthesized and deposited 50% more GAG/DNA. TGFβ and FGF2-sensitivity of Ext1gt/gt chondrocytes was similar to WT cells but their response to BMP-stimulation was enhanced. Loading induced similar activation of mechano-sensitive ERK and P38-signaling in WT and HS-reduced chondrocytes. Transcriptome analysis reflected regulation of cell migration as major load-induced biological process with similar stimulation of common (Fosl1, Itgα5, Timp1, and Ngf) as well as novel mechano-regulated genes (Inhba and Dhrs9). Remarkably, only Ext1-hypomorphic cartilage responded to loading by an expression signature of negative regulation of apoptosis with pro-apoptotic Bnip3 being selectively down-regulated. HS-deficiency enhanced BMP-sensitivity, GAG-production and fostered an anti-apoptotic expression signature after loading, all of which may protect cartilage from load-induced erosion.
MeSH
DOI 10.3390/ijms22073726
PMID 33918436
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