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甘氨酸与衰老:证据与机制。

Glycine and aging: Evidence and mechanisms.

机构信息

Tally Health, Inc., New York, New York, USA.

出版信息

Ageing Res Rev. 2023 Jun;87:101922. doi: 10.1016/j.arr.2023.101922. Epub 2023 Mar 31.

Abstract

The restriction of calories, branched-chain amino acids, and methionine have all been shown to extend lifespan in model organisms. Recently, glycine was found to boost longevity in genetically heterogenous mice. This simple amino acid similarly extends lifespan in rats and improves health in mammalian models of age-related disease. While compelling data indicate that glycine is a pro-longevity molecule, divergent mechanisms may underlie its effects on aging. Glycine is abundant in collagen, a building block for glutathione, a precursor to creatine, and an acceptor for the enzyme glycine N-methyltransferase (GNMT). A review of the literature strongly implicates GNMT, which clears methionine from the body by taking a methyl group from S-adenosyl-L-methionine and methylating glycine to form sarcosine. In flies, Gnmt is required for reduced insulin/insulin-like growth factor 1 signaling and dietary restriction to fully extend lifespan. The geroprotector spermidine requires Gnmt to upregulate autophagy genes and boost longevity. Moreover, the overexpression of Gnmt is sufficient to extend lifespan and reduce methionine levels. Sarcosine, or methylglycine, declines with age in multiple species and is capable of inducing autophagy both in vitro and in vivo. Taken all together, existing evidence suggests that glycine prolongs life by mimicking methionine restriction and activating autophagy.

摘要

卡路里、支链氨基酸和蛋氨酸的限制都已被证明能延长模式生物的寿命。最近,发现甘氨酸能延长遗传异质小鼠的寿命。这种简单的氨基酸同样能延长大鼠的寿命,并改善与年龄相关疾病的哺乳动物模型的健康状况。虽然令人信服的数据表明甘氨酸是一种延长寿命的分子,但它对衰老的影响可能有不同的机制。甘氨酸在胶原蛋白中含量丰富,胶原蛋白是谷胱甘肽的组成部分,是肌酸的前体,也是甘氨酸 N-甲基转移酶 (GNMT) 的受体。对文献的综述强烈暗示,GNMT 通过从 S-腺苷甲硫氨酸中获取一个甲基基团并将甘氨酸甲基化形成肌氨酸来清除体内的蛋氨酸。在果蝇中,Gnmt 对于减少胰岛素/胰岛素样生长因子 1 信号和饮食限制以充分延长寿命是必需的。长寿保护剂亚精胺需要 Gnmt 来上调自噬基因并延长寿命。此外,Gnmt 的过表达足以延长寿命并降低蛋氨酸水平。在多种物种中,肌氨酸或甲基甘氨酸随着年龄的增长而下降,并且能够在体外和体内诱导自噬。综上所述,现有证据表明,甘氨酸通过模拟蛋氨酸限制和激活自噬来延长寿命。

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