褪黑素
膜间隙
线粒体
细胞生物学
生物
受体
褪黑激素受体
线粒体基质
线粒体内膜
化学
内科学
生物化学
内分泌学
酶
医学
细菌外膜
胞浆
基因
大肠杆菌
作者
Dun‐Xian Tan,Rüssel J. Reiter
出处
期刊:Melatonin research
[ST Bio-life]
日期:2019-02-28
卷期号:2 (1): 44-66
被引量:146
摘要
It was a surprising discovery when mitochondria,
as the power houses of cells, were also found to synthesize the potent
mitochondrial targeted antioxidant, melatonin. The melatonin synthetic enzyme serotonin
N-acetyltransferase (SNAT) was found in matrix and also in the intermembrane space
of mitochondria. We hypothesize that the melatonin synthesis occurs in the matrix
due to substrate (N-acetyl co-enzyme A) availability while the intermembrane
space may serve as the recycling pool of SNAT to regulate the melatonin
circadian rhythm. Another surprise was that the melatonin membrane receptors,
including MT1 and MT2, were also present in mitochondria. The protective
effects of melatonin against neuronal injury induced by brain ischemia/reperfusion
were proven to be mainly mediated by mitochondrial melatonin receptors rather
than the cell surface membrane receptors which is contrary to the classical
principle. In addition, melatonin metabolic enzyme has also been identified in
the mitochondria. This enzyme can convert melatonin to N-acetylserotonin to
strengthen the antitumor effects of melatonin. Thus, mitochondria are the
generator, battle ground and metabolic sites of melatonin. The biological
significance of the strong association between mitochondria and melatonin
should be intensively investigated.
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