甘氨酸改善了与Nmdmc介导的线粒体单碳代谢相关的与衰老相关的功能障碍
Jiaying Yu1, Yiran Wang2, Nan Wang3
1Department of Nutrition and Food Hygiene, School of Public Health, Harbin Medical University, Harbin, Heilongjiang, 150081 P. R. China; Key Laboratory of Precision Nutrition and Health of Ministry of Education, School of Public Health, Harbin Medical University, Harbin, Heilongjiang, 150081 P. R. China; School of Nursing, Xuzhou Medical University, Xuzhou, Jiangsu, 221004 P.R.China.
Free radical biology & medicine
|January 29, 2026
概括
糖氨酸 (Gly) 补充剂通过Nmdmc/Mthfd2.2激活单碳代谢 (OCM) 来延长寿命并改善健康寿命. 这个过程增强了线粒体功能和DNA修复,打击衰老.
科学领域:
- 老年学和分子生物学
- 线粒体生物学 线粒体生物学
- 代谢调节 代谢调节 代谢调节
背景情况:
- 衰老与线粒体功能障碍,表观遗传变化和代谢失衡有关.
- 甘氨酸 (Gly) 显示出潜在的抗衰老作用,但其潜在的机制需要阐明.
研究的目的:
- 为了研究Gly.的抗衰老机制.
- 澄清Gly促进健康衰老并改善与年龄相关的表型的分子途径.
主要方法:
- 利用果和老老鼠模型来评估Gly补充剂的效果.
- 评估了的寿命,抗压能力和功能表型.
- 分析了老鼠的生化,组织学和生理学标记.
- 采用了转录组,代谢组和基因淘汰技术来识别关键途径.
主要成果:
- Gly通过对单碳代谢 (OCM) 至关重要的Nmdmc进行上调,延长了果的寿命并改善了果的表型.
- 鉴定出甘油酸是关键代谢物,与增强的线粒体能量代谢有关.
- 在老老鼠中,Gly上调了Mthfd2 (Nmdmc ortolog),减少了神经元损伤,恢复了肝脏和肌肉组织,并促进了线粒体生物发生和甲基化.
结论:
- GLY补充剂通过上调Nmdmc和优化线粒体OCM来缓解与衰老相关的衰退.
- 这种机制增强了DNA修复,线粒体功能和抗氧化压力的能力,促进了更健康的衰老.
相关概念视频
Pharmacokinetics in Geriatric Patients: Effect of Age on Drug Metabolism
215
Geriatric patients show significant variation in how their bodies process medications, which can change how effective and safe treatments are. The liver is the primary organ where drug metabolism occurs, involving two main types of chemical reactions: phase I and II. Phase I metabolism is driven by the cytochrome P450 enzyme system, which includes key types such as CYP3A, CYP2D6, and CYP2C9. Research indicates that while aging doesn't notably alter the levels or activity of these enzymes, it...
215
Animal Mitochondrial Genetics
9.2K
Among all the organelles in an animal cell, only mitochondria have their own independent genomes. Animal mitochondrial DNA is a double-stranded, closed-circular molecule with around 20,000 base pairs. Mitochondrial DNA is unique in that one of its two strands, the heavy, or H, -strand is guanine rich, whereas the complementary strand is cytosine rich and called the light, or L, -strand. Compared to nuclear DNA, mitochondrial DNA has a very low percentage of non-coding regions and is marked by...
9.2K
What is Metabolism?
131.7K
Overview
131.7K
The Carbon Cycle
43.7K
Carbon is the basis of all organic matter on Earth, and is recycled through the ecosystem in two primary processes: one in which carbon is exchanged among living organisms, and one in which carbon is cycled over long periods of time through fossilized organic remains, weathering of rocks, and volcanic activity. Human activities, including increased agricultural practices and the burning of fossil fuels, has greatly affected the balance of the natural carbon cycle.
43.7K
Carbon Skeletons
115.0K
Life on Earth is carbon-based, as all macromolecules that make up living organisms contain carbon atoms. All organic compounds have a carbon backbone. Each carbon atom is tetravalent and can bond with four other atoms, making it an extraordinarily flexible component of biological molecules. Because carbon’s valence electrons are stable, it rarely becomes an ion. As the carbon chain increases in length, structural modifications such as ring structures, double bonds, and branching side...
115.0K
Comparing Mitochondrial, Chloroplast, and Prokaryotic Genomes
16.0K
The present-day mitochondrial and chloroplast genomes have retained some of the characteristics of their ancestral prokaryotes and also have acquired new attributes during their evolution within eukaryotic cells. Like prokaryotic genomes, mitochondrial and chloroplast genomes neither bind with histone-like proteins nor show complex packaging into chromosome-like structures, as observed in eukaryotes. Unlike mitotic cell divisions observed in eukaryotic cells, mitochondria and chloroplasts...
16.0K


