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Brain Metabolic DNA in Rat Cytoplasm

机译:大鼠细胞质中的脑代谢DNA

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摘要

Brain metabolic DNA (BMD) is not involved in cell division or DNA repair but is modulated by memory acquisition, sleep processing, and circadian oscillations. Using routine methods of subcellular fractionation, newly synthesized BMD from male rats is shown to be localized in crude nuclear, mitochondrial, and microsomal fractions and in two fractions of purified nuclei. Sub-fractionation of the mitochondrial fraction indicates the prevalent localization of BMD in free mitochondria and to a lesser degree in synaptosomes and myelin. Cesium density profiles of homogenate, subcellular fractions, and purified nuclei obtained after incorporation periods from 30?min to 4?h indicate that BMD synthesis takes place by reverse transcription in cytoplasmic organelles. Following the acquisition of the double-stranded structure, BMD is transferred to nuclei. Kinetic analyses lasting several weeks highlight the massive BMD turnover in subcellular fractions and purified nuclei and its dependence on age. Data are in agreement with the role of BMD as a temporary information store of cell responses of potential use in comparable forthcoming experiences.
机译:脑代谢DNA(BMD)不参与细胞分裂或DNA修复,而是通过记忆采集,睡眠处理和昼夜振荡调制。使用亚细胞分级的常规方法,从阳性大鼠的新合成的BMD被显示为粗核,线粒体和微粒体级分和纯度核的两级局部。线粒体分数的​​次分馏表明,BMD在游离线粒体中的普遍定位,并在突触体和髓鞘中较小程度。在掺入30≤min至4μl后获得的匀浆,亚细胞级分和纯化核的铯密度分布表明BMD合成在细胞质细胞器中的逆转录中发生。在获取双链结构后,BMD转移到核。动力学分析持续数周突出了亚细胞分数和纯化的核的大规模BMD营业额及其对年龄的依赖。数据与BMD作为潜在使用的临时信息储存的临时信息存储在潜在使用的潜在使用。

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