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N1-乙酰基-N2-甲酰基-5-甲氧基犬尿胺,一种生物胺和褪黑素代谢物,具有强效抗氧化剂的功能。

N1-acetyl-N2-formyl-5-methoxykynuramine, a biogenic amine and melatonin metabolite, functions as a potent antioxidant.

作者信息

Tan D X, Manchester L C, Burkhardt S, Sainz R M, Mayo J C, Kohen R, Shohami E, Huo Y S, Hardeland R, Reiter R J

机构信息

Department of Cellular and Structural Biology, University of Texas Health Science Center, San Antonio, Texas 78229-3900, USA.

出版信息

FASEB J. 2001 Oct;15(12):2294-6. doi: 10.1096/fj.01-0309fje. Epub 2001 Aug 17.

Abstract

The biogenic amine The biogenic amine N1-acetyl-N2-formyl-5-methoxykynuramine (AFMK) was investigated for its potential antioxidative capacity. AFMK is a metabolite generated through either an enzymatic or a chemical reaction pathway from melatonin. The physiological function of AFMK remains unknown. To our knowledge, this report is the first to document the potent antioxidant action of this biogenic amine. Cyclic voltammetry (CV) shows that AFMK donates two electrons at potentials of 456 mV and 668 mV, and therefore it functions as a reductive force. This function contrasts with all other physiological antioxidants that donate a single electron only when they neutralize free radicals. AFMK reduced 8-hydroxydeoxyguanosine formation induced by the incubation of DNA with oxidants significantly. Lipid peroxidation resulting from free radical damage to rat liver homogenates was also prevented by the addition of AFMK. The inhibitory effects of AFMK on both DNA and lipid damage appear to be dose-response related. In cell culture, AFMK efficiently reduced hippocampal neuronal death induced by either hydrogen peroxide, glutamate, or amyloid b25-35 peptide. AFMK is a naturally occurring molecule with potent free radical scavenging capacity (donating two electrons/molecule) and thus may be a valuable new antioxidant for preventing and treating free radical-related disorders.

摘要

对生物胺N1-乙酰基-N2-甲酰基-5-甲氧基犬尿胺(AFMK)的潜在抗氧化能力进行了研究。AFMK是通过褪黑素的酶促或化学反应途径产生的一种代谢产物。AFMK的生理功能尚不清楚。据我们所知,本报告首次记录了这种生物胺的强大抗氧化作用。循环伏安法(CV)表明,AFMK在456 mV和668 mV的电位下提供两个电子,因此它起到还原力的作用。该功能与所有其他生理抗氧化剂形成对比,其他抗氧化剂在中和自由基时仅提供一个电子。AFMK显著减少了DNA与氧化剂孵育诱导的8-羟基脱氧鸟苷的形成。添加AFMK也可防止自由基对大鼠肝脏匀浆造成的脂质过氧化。AFMK对DNA和脂质损伤的抑制作用似乎与剂量反应相关。在细胞培养中,AFMK有效地减少了由过氧化氢、谷氨酸或淀粉样蛋白β25-35肽诱导的海马神经元死亡。AFMK是一种具有强大自由基清除能力(每个分子提供两个电子)的天然存在的分子,因此可能是预防和治疗自由基相关疾病的一种有价值的新型抗氧化剂。

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