Disrupted cardiac fibroblast BCAA catabolism contributes to diabetic cardiomyopathy via a periostin/NAP1L2/SIRT3 axis.
心臓線維芽細胞におけるBCAA異化の障害は、ペリオスチン/NAP1L2/SIRT3軸を介して糖尿病性心筋症に寄与する (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
- ヒト・動物 併記
- 出版年
- 2023
- 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
- 2026/08/03
- 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)
糖尿病性心筋症(DCM)におけるペリオスチンの役割と機構を解明するため、DCM患者、糖尿病マウス、高糖濃度(HG)曝露心臓線維芽細胞(CF)で発現を検討し、機能獲得・喪失実験、RNAシーケンスを行った。その結果、ペリオスチンは糖尿病心で最も上昇し、DCM患者やHG曝露CFでも増加した。ペリオスチン欠損マウスは心機能障害と心筋傷害から保護されたが、過剰発現は悪化させた。高血糖はTGF-β/Smad依存的にペリオスチンを誘導し、ペリオスチンはNAP1L2を介してSIRT3を動員し、BCAA異化酵素のプロモーターのH3K27acを脱アセチル化してBCAA異化を障害した。また、CF由来ペリオスチンは心筋細胞に肥大、酸化障害、炎症を誘導し、グルコシリンジン酸がペリオスチンを阻害してDCMを改善した。
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抄録
Background: Periostin is an extracellular matrix protein that plays a critical role in cell fate determination and tissue remodeling, but the underlying role and mechanism of periostin in diabetic cardiomyopathy (DCM) are far from clear. Thus, we aimed to clarify the mechanistic participation of periostin in DCM.Methods: The expression of periostin was examined in DCM patients, diabetic mice and high glucose (HG)-exposed cardiac fibroblasts (CF). Gain- and loss-of-function experiments assessed the potential role of periostin in DCM pathogenesis. RNA sequencing was used to investigate the underlying mechanisms of periostin in DCM.Results: A mouse cytokine antibody array showed that the protein expression of periostin was most significantly upregulated in diabetic mouse heart, and this increase was also observed in patients with DCM or HG-incubated CF. Periostin-deficient mice were protected from diabetes-induced cardiac dysfunction and myocardial damage, while overexpression of periostin held the opposite effects. Hyperglycemia stimulated the expression of periostin in a TGF-β/Smad-dependent manner. RNA sequencing results showed that periostin upregulated the expression of nucleosome assembly protein 1-like 2 (NAP1L2) which recruited SIRT3 to deacetylate H3K27ac on the promoters of the branched-chain amino acid (BCAA) catabolism-related enzymes BCAT2 and PP2Cm, resulting in BCAA catabolism impairment. Additionally, CF-derived periostin induced hypertrophy, oxidative injury and inflammation in primary cardiomyocytes. Finally, we identified that glucosyringic acid (GA) specifically targeted and inhibited periostin to ameliorate DCM.Conclusion: Overall, manipulating periostin expression may function as a promising strategy in the treatment of DCM.
MeSH
DOI 10.1186/s11658-023-00510-4
PMID 37993768
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