Department of Neurogenetics, Max Planck Institute for Multidisciplinary Sciences, Göttingen, Germany.
Neuroproteomics Group, Department of Molecular Neurobiology, Max Planck Institute for Multidisciplinary Sciences, Göttingen, Germany.
Sci Adv. 2022 Sep 16;8(37):eabo7639. doi: 10.1126/sciadv.abo7639.
To maintain homeostasis, the body, including the brain, reprograms its metabolism in response to altered nutrition or disease. However, the consequences of these challenges for the energy metabolism of the different brain cell types remain unknown. Here, we generated a proteome atlas of the major central nervous system (CNS) cell types from young and adult mice, after feeding the therapeutically relevant low-carbohydrate, high-fat ketogenic diet (KD) and during neuroinflammation. Under steady-state conditions, CNS cell types prefer distinct modes of energy metabolism. Unexpectedly, the comparison with KD revealed distinct cell type-specific strategies to manage the altered availability of energy metabolites. Astrocytes and neurons but not oligodendrocytes demonstrated metabolic plasticity. Moreover, inflammatory demyelinating disease changed the neuronal metabolic signature in a similar direction as KD. Together, these findings highlight the importance of the metabolic cross-talk between CNS cells and between the periphery and the brain to manage altered nutrition and neurological disease.
为了维持体内平衡,包括大脑在内的身体会根据营养或疾病的变化重新调整其代谢。然而,这些挑战对不同脑细胞类型的能量代谢的影响尚不清楚。在这里,我们生成了来自年轻和成年小鼠的主要中枢神经系统 (CNS) 细胞类型的蛋白质组图谱,这些小鼠在接受治疗相关的低碳水化合物、高脂肪生酮饮食 (KD) 和神经炎症期间接受了治疗。在稳态条件下,CNS 细胞类型优先采用不同的能量代谢模式。出乎意料的是,与 KD 的比较显示出不同的细胞类型特异性策略来管理能量代谢物可用性的改变。星形胶质细胞和神经元,但不是少突胶质细胞,表现出代谢可塑性。此外,炎症性脱髓鞘疾病使神经元的代谢特征朝着与 KD 相似的方向改变。总之,这些发现强调了中枢神经系统细胞之间以及外周与大脑之间代谢相互作用的重要性,以应对营养改变和神经疾病。