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GADL1 is a multifunctional decarboxylase with tissue-specific roles in β-alanine and carnosine production

机译:GADL1是一种多功能脱羧酶,具有β-丙氨酸和肉核苷酸产生的组织特异性作用

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Carnosine and related β-alanine–containing peptides are believed to be important antioxidants, pH buffers, and neuromodulators. However, their biosynthetic routes and therapeutic potential are still being debated. This study describes the first animal model lacking the enzyme glutamic acid decarboxylase–like 1 (GADL1). We show that Gadl1sup?/?/sup mice are deficient in β-alanine, carnosine, and anserine, particularly in the olfactory bulb, cerebral cortex, and skeletal muscle. Gadl1sup?/?/sup mice also exhibited decreased anxiety, increased levels of oxidative stress markers, alterations in energy and lipid metabolism, and age-related changes. Examination of the GADL1 active site indicated that the enzyme may have multiple physiological substrates, including aspartate and cysteine sulfinic acid. Human genetic studies show strong associations of the GADL1 locus with plasma levels of carnosine, subjective well-being, and muscle strength. Together, this shows the multifaceted and organ-specific roles of carnosine peptides and establishes Gadl1 knockout mice as a versatile model to explore carnosine biology and its therapeutic potential.
机译:据信肉毒苷和含β-丙氨酸肽是重要的抗氧化剂,pH缓冲液和神经调节剂。然而,他们的生物合成路线和治疗潜力仍在讨论。本研究描述了缺乏酶谷氨酸脱羧酶样1(GADL1)的第一动物模型。我们表明gadl1 ?/α/α/ηs?小鼠缺乏β-丙氨酸,肉核苷酸和茴香素,特别是在嗅灯泡,脑皮层和骨骼肌中。 gadl1 ?/αs?小鼠也表现出焦虑降低,氧化应激标记物的水平增加,能量和脂质代谢的改变以及与年龄相关的变化。检查GADL1活性位点表明酶可具有多种生理基质,包括天冬氨酸和半胱氨酸硫酸酸。人类遗传研究显示了GADL1基因座的强烈关联,具有血浆水平的肉毒糖,主观福祉和肌肉力量。这表明肉毒肽肽的多方型和器官特异性作用,并建立了GADL1敲除小鼠作为探索肉核苷酸生物学及其治疗潜力的通用模型。

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