Enhanced small neutral but not branched chain amino acid transport after epigenetic sodium coupled neutral amino acid transporter-2 (SNAT2) cDNA expression in myoblasts.
筋芽細胞におけるエピジェネティックなナトリウム共役中性アミノ酸輸送体-2(SNAT2)cDNA発現後の小型中性アミノ酸輸送の増強、分岐鎖アミノ酸輸送は非増強 (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
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- 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
- 2026/08/03
- 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)
骨格筋のアミノ酸輸送は加齢に伴い低下し、フレイルの一因となる。本研究ではC2C12筋芽細胞と筋管細胞を用い、SNAT2 cDNAの過剰発現がアミノ酸輸送に及ぼす影響を検討した。筋管細胞では筋芽細胞に比べSNAT2発現が6.5倍低下した。SNAT2-eGFPプラスミド導入により筋芽細胞で核周囲の点状発現が増加し、筋管分化後も細胞質に持続した。導入細胞は5α-ジヒドロテストステロン(DHT)に有意に応答し、飢餓条件下でC14-MeAIB輸送が1.7倍増加した。一方、高濃度MeAIBによるSNAT2阻害でLAT2を介したC14-イソロイシン輸送が有意に減少したが、DHT曝露によるLAT2輸送の増加は認められなかった。以上より、SNAT2過剰発現は飢餓やDHT刺激下で機能を増強し、アミノ酸輸送異常を伴う病態へのエピジェネティックな標的となり得る。
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抄録
Background: Skeletal muscle mass and function are partly maintained by the supply of amino acids, altered amino acid transport is an important cause of frailty that can lead to decreased independence with increasing age and slow trauma recovery. The system-A sodium coupled neutral amino acid transporter (SNAT)-2 coded by gene family SLC38A2 generates a 506 amino acid 56 kDa protein that is an important transporter of amino acids in skeletal muscle. Ageing is associated with a decrease in expression of SNAT2 transporters.Methods: In this study, we used the C2C12 cell line, using myoblast cells and cells differentiated into myotubes. We investigated if the expression of SNAT2 DNA would enhance intracellular amino acid levels and increase their availability for protein synthesis.Results: In control myoblasts and myotubes, we found significantly decreased expression of SNAT2 (6.5× decrease, n = 4 per group, P < 0.05) in myotubes than found in myoblasts. After transfection with a SNAT2-eGFP cDNA plasmid, C2C12 myoblasts significantly increased perinuclear punctate SNAT2-eGFP expression that persisted and was more cytoplasmic after differentiation into myotubes. Interestingly, transfected cells were significantly more responsive to the hormone 5α-dihydrotestosterone (DHT, 4.5 nM, by 1.6×, n = 3 per group, P < 0.04). Starvation significantly enhanced the amino acid C14 -MeAIB transport (1.7×, n = 3 per group, P < 0.05) indicating increased function of SNAT2. Inhibiting SNAT2 with high concentrations of MeAIB (3.3 or 5 mM) significantly reduced C14 -Isoleucine transport by L-type amino acid transporter (LAT2, 52.8% and 77%, respectively, n = 3 per group, P < 0.05). However, there was no increase in the LAT2 transport of C14 -isoleucine detectable in SNAT2-eGFP transfected cells after DHT (4.5 nM) exposure. This indicated that small amino acid availability was not rate limiting to LAT2 function in myoblasts.Conclusions: Overall, these data show that transfection of SNAT2-eGFP expression enhanced its function following starvation and treatment with physiological levels of DHT. Enhanced SNAT2 expression in muscle cells offers a viable epigenetic target in pathological conditions associated with altered amino acid transport.
MeSH
DOI 10.1002/jcsm.12707
PMID 33982880
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