Melatonin: A Mitochondrial Targeting Molecule Involving Mitochondrial Protection and Dynamics
Мелатонин: молекула, нацеленная на митохондрии и участвующая в защите и динамике митохондрий
2016-12-16
SCID: 54.1/6gj4mahp
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mitochondrial dynamicsmitochondrial melatonin transportermitochondrial protectionmitochondrial targetingmitophagy
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Abstract (AI)
-acetyltransferase (AANAT/SNAT) is localized in mitochondria of oocytes and the isolated mitochondria generate melatonin. We have also speculated that melatonin is a mitochondria-targeted antioxidant. It accumulates in mitochondria with high concentration against a concentration gradient. This is probably achieved by an active transportation via mitochondrial melatonin transporter(s). Melatonin protects mitochondria by scavenging reactive oxygen species (ROS), inhibiting the mitochondrial permeability transition pore (MPTP), and activating uncoupling proteins (UCPs). Thus, melatonin maintains the optimal mitochondrial membrane potential and preserves mitochondrial functions. In addition, mitochondrial biogenesis and dynamics is also regulated by melatonin. In most cases, melatonin reduces mitochondrial fission and elevates their fusion. Mitochondrial dynamics exhibit an oscillatory pattern which matches the melatonin circadian secretory rhythm in pinealeocytes and probably in other cells. Recently, melatonin has been found to promote mitophagy and improve homeostasis of mitochondria.
Key Findings
1
AANAT/SNAT is localized in oocyte mitochondria, which can generate melatonin locally.
2
By maintaining optimal mitochondrial membrane potential, melatonin preserves mitochondrial functions and regulates mitochondrial biogenesis and dynamics.
3
Melatonin generally reduces mitochondrial fission, promotes fusion, and stimulates mitophagy, thereby improving mitochondrial homeostasis; mitochondrial dynamics may oscillate with melatonin’s circadian secretion.
4
Melatonin likely acts as a mitochondria-targeted antioxidant, accumulating inside mitochondria against a concentration gradient through active transport.
5
Melatonin protects mitochondria by scavenging reactive oxygen species, inhibiting the mitochondrial permeability transition pore, and activating uncoupling proteins.
6
В митохондриях ооцитов локализован AANAT/SNAT, и изолированные митохондрии способны локально синтезировать мелатонин.
7
Мелатонин защищает митохондрии, нейтрализуя активные формы кислорода, ингибируя пору перехода проницаемости митохондрий и активируя разобщающие белки.
8
Мелатонин обычно уменьшает митохондриальное деление, усиливает слияние и стимулирует митофагию, улучшая гомеостаз митохондрий; динамика митохондрий может колебаться синхронно с циркадной секрецией мелатонина.
9
Мелатонин, вероятно, действует как антиоксидант, направленный в митохондрии, и накапливается в них вопреки градиенту концентрации посредством активного транспорта.
10
Поддерживая оптимальный мембранный потенциал митохондрий, мелатонин сохраняет их функции и регулирует митохондриальный биогенез и динамику.
Research Object
Mitochondria and mitochondrial homeostasis
Research Subject
Melatonin-mediated mitochondrial protection, regulation of mitochondrial dynamics, biogenesis, and mitophagy
Publication Details
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2016-12-16
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