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Non-signalling energy use in the brain

机译:大脑中无信号的能源使用

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Energy use limits the information processing power of the brain. However, apart from the ATP used to power electrical signalling, a significant fraction of the brain's energy consumption is not directly related to information processing. The brain spends just under half of its energy on non-signalling processes, but it remains poorly understood which tasks are so energetically costly for the brain. We review existing experimental data on subcellular processes that may contribute to this non-signalling energy use, and provide modelling estimates, to try to assess the magnitude of their ATP consumption and consider how their changes in pathology may compromise neuronal function. As a main result, surprisingly little consensus exists on the energetic cost of actin treadmilling, with estimates ranging from <1% of the brain's global energy budget up to one-half of neuronal energy use. Microtubule treadmilling and protein synthesis have been estimated to account for very small fractions of the brain's energy budget, whereas there is stronger evidence that lipid synthesis and mitochondrial proton leak are energetically expensive. Substantial further research is necessary to close these gaps in knowledge about the brain's energy-expensive non-signalling tasks.
机译:能源消耗限制了大脑的信息处理能力。但是,除了用于为电子信号提供动力的ATP之外,大脑的很大一部分能量消耗与信息处理没有直接关系。大脑在非信号传递过程上的能量消耗不到其能量的一半,但人们仍然对哪些任务对大脑的能量消耗如此之高尚不甚了解。我们审查了可能有助于这种无信号消耗的能量的亚细胞过程的现有实验数据,并提供了建模估计,以试图评估其ATP消耗量,并考虑其病理变化如何损害神经元功能。作为主要结果,令人惊讶的是,关于肌动蛋白跑步机的能量消耗却几乎没有共识,估计范围从大脑全球能量预算的<1%到神经元能量消耗的一半。据估计,微管跑步机和蛋白质合成仅占大脑能量预算的很小一部分,而更有力的证据表明脂质合成和线粒体质子泄漏在能量上是昂贵的。有必要进行大量的进一步研究以弥合人们对大脑耗能大的无信号任务的认识上的空白。

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