褪黑素在光合作用原核生物红红螺旋藻中的免疫反应性:对古代抗氧化系统的影响。

L C Manchester, B Poeggeler, F L Alvares, G B Ogden, R J Reiter
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摘要

红红螺旋菌是一种螺旋无氧光合细菌,可以在好氧或厌氧条件下生存。这种生物在有光或完全黑暗的环境中茁壮成长,是最古老的生物物种之一,可能有20 - 35亿年的历史。这种原核生物物种的成功可能归因于某些吲哚化合物的进化,这些化合物可以保护它们免受进化中恶劣环境产生的危及生命的氧自由基的侵害。褪黑素,n -乙酰-5-甲氧基色胺,是一种吲哚类高度保守分子,存在于原生生物、植物和动物中。本研究是为了确定在长时间黑暗或长时间光照条件下,莫奈拉菌,特别是光合细菌红毛菌中免疫反应性褪黑素的存在。在延长的白天和延长的夜晚测量免疫反应性褪黑激素。在斑期观察到的褪黑素明显多于光期。这项研究首次证明了褪黑素在细菌中的作用。在细菌中观察到的高水平褪黑素可能提供细菌DNA免受自由基攻击的现场保护。
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Melatonin immunoreactivity in the photosynthetic prokaryote Rhodospirillum rubrum: implications for an ancient antioxidant system.

Rhodospirillum rubrum is a spiral anoxygenic photosynthetic bacterium that can exist under either aerobic or anaerobic conditions. The organism thrives in the presence of light or complete darkness and represents one of the oldest species of living organisms, possibly 2-3.5 billion years old. The success of this prokaryotic species may be attributed to the evolution of certain indole compounds that offer protection against life-threatening oxygen radicals produced by an evolutionary harsh environment. Melatonin, N-acetyl-5-methoxytryptamine, is an indolic highly conserved molecule that exists in protists, plants, and animals. This study was undertaken to determine the presence of an immunoreactive melatonin in the kingdom Monera and particularly in the photosynthetic bacterium, R. rubrum, under conditions of prolonged darkness or prolonged light. Immunoreactive melatonin was measured during both the extended day and extended night. Significantly more melatonin was observed during the scotophase than the photophase. This study marks the first demonstration of melatonin in a bacterium. The high level of melatonin observed in bacteria may provide on-site protection of bacterial DNA against free radical attack.

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