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Tissue-specific down-regulation of S-adenosyl-homocysteine via suppression of dAhcyL1/dAhcyL2 extends health span and life span in Drosophila

机译:通过抑制dAhcyL1 / dAhcyL2抑制S-腺苷-高半胱氨酸的组织特异性下调延长了果蝇的健康期和寿命

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摘要

Aging is a risk factor for many human pathologies and is characterized by extensive metabolic changes. Using targeted high-throughput metabolite profiling in Drosophila melanogaster at different ages, we demonstrate that methionine metabolism changes strikingly during aging. Methionine generates the methyl donor S-adenosyl-methionine (SAM), which is converted via methylation to S-adenosyl-homocysteine (SAH), which accumulates during aging. A targeted RNAi screen against methionine pathway components revealed significant life span extension in response to down-regulation of two noncanonical Drosophila homologs of the SAH hydrolase Ahcy (S-adenosyl-L-homocysteine hydrolase [SAHH[), CG9977/dAhcyL1 and Ahcy89E/CG8956/dAhcyL2, which act as dominant-negative regulators of canonical AHCY. Importantly, tissue-specific down-regulation of dAhcyL1/L2 in the brain and intestine extends health and life span. Furthermore, metabolomic analysis of dAhcyL1-deficient flies revealed its effect on age-dependent metabolic reprogramming and H3K4 methylation. Altogether, reprogramming of methionine metabolism in young flies and suppression of age-dependent SAH accumulation lead to increased life span. These studies highlight the role of noncanonical Ahcy enzymes as determinants of healthy aging and longevity.
机译:衰老是许多人类疾病的危险因素,其特征是广泛的代谢变化。使用果蝇果蝇在不同年龄的有针对性的高通量代谢物谱,我们证明蛋氨酸的代谢在衰老过程中发生显着变化。甲硫氨酸可生成甲基供体S-腺苷-甲硫氨酸(SAM),通过甲基化将其转化为S-腺苷-高半胱氨酸(SAH),并在老化过程中累积。针对甲硫氨酸途径成分的靶向RNAi筛选显示,响应于SAH水解酶Ahcy的两个非规范果蝇同源物(S-腺苷-L-高半胱氨酸水解酶[SAHH [],CG9977 / dAhcyL1和Ahcy89E / CG8956)的下调,显着延长了寿命/ dAhcyL2,充当规范AHCY的显性负调节剂。重要的是,大脑和肠道中dAhcyL1 / L2的组织特异性下调延长了健康和寿命。此外,dAhcyL1缺陷果蝇的代谢组学分析揭示了它对年龄依赖性代谢重编程和H3K4甲基化的影响。总而言之,年轻果蝇中蛋氨酸代谢的重编程和年龄依赖性SAH积累的抑制导致寿命的延长。这些研究强调了非经典Ahcy酶作为健康衰老和长寿的决定因素的作用。

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