Accademia Di Scienze Fisiche E Matematiche, Via Mezzocannone 8, 80134, Napoli, Italy.
Dept Neuroscience, University of Verona, Strada Le Grazie 8, 37129, Verona, Italy.
Mol Neurobiol. 2023 Jan;60(1):228-234. doi: 10.1007/s12035-022-03030-y. Epub 2022 Oct 17.
We have previously outlined the main properties of brain metabolic DNA (BMD) and its involvement in circadian oscillations, learning, and post-trial sleep. The presence of BMD in certain subcellular fractions and their behavior in cesium gradients have suggested that BMD originates from cytoplasmic reverse transcription and subsequently acquires a double-stranded configuration. More recently, it has been reported that some DNA sequences of cytoplasmic BMD in learning mice are different from that of the control animals. Furthermore, BMD is located in vicinity of the genes involved in different modifications of synaptic activity, suggesting that BMD may contribute to the brain's response to the changing environment. The present review outlines recent data with a special emphasis on reverse transcription of BMD that may recapitulate the molecular events at the time of the "RNA world" by activating mitochondrial telomerase and generating RNA templates from mitochondrial transcripts. The latter unexpected role of mitochondria is likely to promote a better understanding of mitochondrial contribution to cellular interactions and eukaryotic evolution. An initial step regards the role of human mitochondria in embryonic BMD synthesis, which is exclusively of maternal origin. In addition, mitochondrial transcripts involved in reverse transcription of BMD might possibly reveal unexpected features elucidating mitochondrial involvement in cancer events and neurodegenerative disorders.
我们之前已经概述了脑代谢 DNA(BMD)的主要特性及其在昼夜节律振荡、学习和试验后睡眠中的作用。BMD 存在于某些亚细胞部分及其在铯梯度中的行为表明,BMD 源自细胞质逆转录,随后获得双链结构。最近有报道称,学习小鼠细胞质 BMD 的一些 DNA 序列与对照动物不同。此外,BMD 位于涉及突触活动不同修饰的基因附近,表明 BMD 可能有助于大脑对不断变化的环境的反应。本综述概述了最近的数据,特别强调了 BMD 的逆转录,这可能通过激活线粒体端粒酶并从线粒体转录本生成 RNA 模板来再现“RNA 世界”时期的分子事件。线粒体的这一意外作用可能有助于更好地理解线粒体对细胞相互作用和真核进化的贡献。一个初始步骤涉及人类线粒体在胚胎 BMD 合成中的作用,而胚胎 BMD 合成仅源自母体。此外,参与 BMD 逆转录的线粒体转录本可能揭示出人意料的特征,阐明线粒体参与癌症事件和神经退行性疾病。