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麦角硫因通过依赖于胱硫醚γ-裂解酶(CSE)的过硫化作用增强胱氨酸γ-亚磺酰基脱羧酶(cGPDH)的活性,从而改善老年动物的健康寿命。

Ergothioneine improves healthspan of aged animals by enhancing cGPDH activity through CSE-dependent persulfidation.

作者信息

Petrovic Dunja, Slade Luke, Paikopoulos Yiorgos, D'Andrea Davide, Savic Nevena, Stancic Ana, Miljkovic Jan Lj, Vignane Thibaut, Drekolia Maria Kyriaki, Mladenovic Dusan, Sutulovic Nikola, Refeyton Alice, Kolakovic Milica, Jovanovic Vladimir M, Zivanovic Jasmina, Miler Marko, Vellecco Valentina, Brancaleone Vincenzo, Bucci Mariarosaria, Casey Alva M, Yu ChakShun, Kasarla Siva Swapna, Smith Karl William, Kalfe-Yildiz Ayten, Stenzel Martin, Miranda-Vizuete Antonio, Hergenröder Roland, Phapale Prasad, Stanojlovic Olivera, Ivanovic-Burmazovic Ivana, Vlaski-Lafarge Marija, Bibli Sofia-Iris, Murphy Michael P, Otasevic Vesna, Filipovic Milos R

机构信息

Leibniz Institute for Analytical Sciences, ISAS e.V., Dortmund, Germany.

Institute for Biological Research "Sinisa Stankovic", National Institute of the Republic of Serbia, University of Belgrade, Belgrade, Serbia.

出版信息

Cell Metab. 2025 Feb 4;37(2):542-556.e14. doi: 10.1016/j.cmet.2024.12.008. Epub 2025 Jan 21.

Abstract

Ergothioneine (ET), a dietary thione/thiol, is receiving growing attention for its possible benefits in healthy aging and metabolic resilience. Our study investigates ET's effects on healthspan in aged animals, revealing lifespan extension and enhanced mobility in Caenorhabditis elegans, accompanied by improved stress resistance and reduced age-associated biomarkers. In aged rats, ET administration enhances exercise endurance, muscle mass, and vascularization, concomitant with higher NAD levels in muscle. Mechanistically, ET acts as an alternative substrate for cystathionine gamma-lyase (CSE), stimulating HS production, which increases protein persulfidation of more than 300 protein targets. Among these, protein-persulfidation-driven activation of cytosolic glycerol-3-phosphate dehydrogenase (cGPDH) primarily contributes to the ET-induced NAD increase. ET's effects are abolished in models lacking CSE or cGPDH, highlighting the essential role of HS signaling and protein persulfidation. These findings elucidate ET's multifaceted actions and provide insights into its therapeutic potential for combating age-related muscle decline and metabolic perturbations.

摘要

麦角硫因(ET)是一种膳食硫酮/硫醇,因其在健康衰老和代谢恢复力方面的潜在益处而受到越来越多的关注。我们的研究调查了ET对老年动物健康寿命的影响,发现其可延长秀丽隐杆线虫的寿命并增强其活动能力,同时提高抗应激能力并减少与年龄相关的生物标志物。在老年大鼠中,给予ET可增强运动耐力、肌肉质量和血管生成,同时肌肉中的NAD水平升高。从机制上讲,ET作为胱硫醚γ-裂解酶(CSE)的替代底物,刺激硫化氢(HS)生成,从而增加300多个蛋白质靶点的蛋白质过硫化作用。其中,蛋白质过硫化驱动的胞质甘油-3-磷酸脱氢酶(cGPDH)激活主要促成了ET诱导的NAD增加。在缺乏CSE或cGPDH的模型中,ET的作用消失,突出了HS信号传导和蛋白质过硫化的重要作用。这些发现阐明了ET的多方面作用,并为其对抗与年龄相关的肌肉衰退和代谢紊乱的治疗潜力提供了见解。

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