筋肉の若さを支えるHGFを強化する化合物を世界で初めて発見ー加齢性疾患の予防・治療法開発による健康寿命の延伸に期待ー

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2026-07-24 九州大学

九州大学の辰巳隆一教授らは、筋幹細胞の活性化に必須な肝細胞増殖因子(HGF)の機能を強化する化合物を世界で初めて発見した。研究チームは、加齢に伴うHGFのニトロ化による機能低下が筋萎縮の原因となることをこれまでに示しており、今回、リポ酸トリスルフィド(LASSS)がHGFと直接相互作用して局所構造を変化させ、ニトロ化耐性と受容体への結合親和性を同時に高めることを明らかにした。LASSSは単なる抗酸化作用ではなく、HGFを「スーパーHGF」ともいえる高機能状態へ変換し、筋幹細胞の活性化や増殖・分化能を維持したまま生理機能を増強する点が特徴である。この作用はヒトだけでなくイヌやネコのHGFにも適用可能であり、加齢性筋萎縮や筋再生不全に対する新たな医薬品開発や伴侶動物医療への応用が期待される。健康寿命の延伸に資する新しい分子標的治療の基盤となる成果である。

筋肉の若さを支えるHGFを強化する化合物を世界で初めて発見ー加齢性疾患の予防・治療法開発による健康寿命の延伸に期待ー

<関連情報>

リポ酸三硫化物との相互作用により、受容体親和性の向上とニトロ化機能障害耐性を備えた強化型HGF Enhanced HGF with increased receptor affinity and nitration-dysfunction resistance through interaction with lipoic acid trisulfide

Kahona Zushi,Miyumi Seki,Ryota Mizuochi,Kazuki Shitamitsu,Alaa Elgaabari,Sakiho Tanaka,Junri Miyamoto,Kaoru Mizoguchi,Reina Fujimaru,Jiaxi Han,Takashi Nakashima,Shoko Sawano,Wataru Mizunoya,Takahiro Maeno,Issei Yokoyama,Takahiro Suzuki,Judy E. Anderson & Ryuichi Tatsumi
Scientific Reports  Published:24 July 2026
DOI:https://doi.org/10.1038/s41598-026-60835-w

Abstract

Myogenic stem cell activator HGF (hepatocyte growth factor) undergoes nitration of tyrosine residues (Y198, Y250) predominantly on fast-twitch fibers to lose its binding affinity to the signaling receptor c-met, in response to peroxynitrite (ONOO) generation during aging. Here we show that HGF adopts an enhanced form with dynamically increased receptor-binding affinity and nitration-dysfunction resistance through interaction with lipoic acid trisulfide (LASSS) under physiological conditions. When evaluated after exposure to LASSS at a 1:8000 molar ratio to HGF and subsequent ultra-filtration to wash-out un-reacted free LASSS, c-met binding affinity increased more than two-fold over the original non-nitrated HGF. The same LASSS treatment also conferred nitration resistance with a greater effect for Y198 than Y250, indicating a novel mechanism independent of an anti-oxidative function of LASSS. Neither glutathione trisulfide (GSSSG, a potent anti-oxidant) nor lipoic acid enhanced c-met binding or nitration resistance, and thus served as controls. Importantly, pre-administration of LASSS to mice prevented the disuse-induced HGF nitration observed in a tail-suspension model for muscle atrophy, while GSSSG did not. The findings encourage the idea that LASSS may react with HGF to enhance its receptor-binding affinity and nitration resistance, which are known to strongly drive myogenic stem cell dynamics and homeostasis. Application of this model could potentially lead to pioneering strategies to counteract or treat age-related muscle atrophy and impaired regeneration with fibrosis and fat infiltration (including sarcopenia and frailty).

生物化学工学
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