首页> 美国卫生研究院文献>Biomedicines >Energy Entropy and Quantum Tunneling of Protons and Electrons in Brain Mitochondria: Relation to Mitochondrial Impairment in Aging-Related Human Brain Diseases and Therapeutic Measures
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Energy Entropy and Quantum Tunneling of Protons and Electrons in Brain Mitochondria: Relation to Mitochondrial Impairment in Aging-Related Human Brain Diseases and Therapeutic Measures

机译:脑线粒体质子和电子的能量熵和量子隧穿:与衰老衰老的人脑病和治疗措施的线粒体障碍

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摘要

Adult human brains consume a disproportionate amount of energy substrates (2–3% of body weight; 20–25% of total glucose and oxygen). Adenosine triphosphate (ATP) is a universal energy currency in brains and is produced by oxidative phosphorylation (OXPHOS) using ATP synthase, a nano-rotor powered by the proton gradient generated from proton-coupled electron transfer (PCET) in the multi-complex electron transport chain (ETC). ETC catalysis rates are reduced in brains from humans with neurodegenerative diseases (NDDs). Declines of ETC function in NDDs may result from combinations of nitrative stress (NS)–oxidative stress (OS) damage; mitochondrial and/or nuclear genomic mutations of ETC/OXPHOS genes; epigenetic modifications of ETC/OXPHOS genes; or defects in importation or assembly of ETC/OXPHOS proteins or complexes, respectively; or alterations in mitochondrial dynamics (fusion, fission, mitophagy). Substantial free energy is gained by direct O2-mediated oxidation of NADH. Traditional ETC mechanisms require separation between O2 and electrons flowing from NADH/FADH2 through the ETC. Quantum tunneling of electrons and much larger protons may facilitate this separation. Neuronal death may be viewed as a local increase in entropy requiring constant energy input to avoid. The ATP requirement of the brain may partially be used for avoidance of local entropy increase. Mitochondrial therapeutics seeks to correct deficiencies in ETC and OXPHOS.
机译:成年人大脑消耗不成比例的能量底物(2-3%的体重; 20-25%的总葡萄糖和氧气)。腺苷三磷酸(ATP)是大脑中的通用能量货币,并使用ATP合成酶的氧化磷酸化(毒物)产生,该纳米转子由多重复合电子中的质子耦合电子转移(PCET)产生的质子梯度提供动力运输链(等)。 ETC催化率从具有神经退行性疾病(NDDS)的人类的大脑中减少。在NDDS中的等异功能下降可能是由氮化应激(NS) - 氧化应激(OS)损伤的组合产生的;等粒子和/或核基因组突变的ETC /毒物基因; ETC /毒物基因的表观遗传修饰;或分别在ETC /毒物蛋白或复合物的进口或组装中缺陷;或线粒体动力学(融合,裂变,乳化物)的改变。通过直接O 2介导的NADH氧化来获得基本的自由能。传统的等等机制需要从NADH / FADH2流过的O2和电子之间的分离。电子的量子隧穿和更大的质子可以促进这种分离。神经元死亡可以被视为需要恒定能量输入的熵的局部增加以避免。大脑的ATP要求可以部分地用于避免局部熵增加。线粒体治疗剂旨在纠正等等缺陷和毒品。

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