Energy & Memory, Brain Plasticity (UMR 8249), CNRS, ESPCI Paris, PSL Research University, 75005 Paris, France.
Energy & Memory, Brain Plasticity (UMR 8249), CNRS, ESPCI Paris, PSL Research University, 75005 Paris, France
Learn Mem. 2024 Jun 11;31(5). doi: 10.1101/lm.053823.123. Print 2024 May.
Providing metabolic support to neurons is now recognized as a major function of glial cells that is conserved from invertebrates to vertebrates. However, research in this field has focused for more than two decades on the relevance of lactate and glial glycolysis for neuronal energy metabolism, while overlooking many other facets of glial metabolism and their impact on neuronal physiology, circuit activity, and behavior. Here, we review recent work that has unveiled new features of glial metabolism, especially in , in the modulation of behavioral traits involving the mushroom bodies (MBs). These recent findings reveal that spatially and biochemically distinct modes of glucose-derived neuronal fueling are implemented within the MB in a memory type-specific manner. In addition, cortex glia are endowed with several antioxidant functions, whereas astrocytes can serve as pro-oxidant agents that are beneficial to redox signaling underlying long-term memory. Finally, glial fatty acid oxidation seems to play a dual fail-safe role: first, as a mode of energy production upon glucose shortage, and, second, as a factor underlying the clearance of excessive oxidative load during sleep. Altogether, these integrated studies performed in indicate that glial metabolism has a deterministic role on behavior.
为神经元提供代谢支持,现已被公认为神经胶质细胞的主要功能之一,在从无脊椎动物到脊椎动物的物种中普遍存在。然而,该领域的研究已经超过 20 年集中于乳酸和神经胶质糖酵解对于神经元能量代谢的相关性,而忽略了神经胶质代谢的许多其他方面及其对神经元生理学、回路活动和行为的影响。在这里,我们回顾了最近的研究工作,这些工作揭示了神经胶质代谢的新特征,特别是在 ,在涉及蘑菇体(MB)的行为特征的调制中。这些最近的发现表明,在记忆类型特异性的方式中,在 MB 内实施了空间上和生物化学上不同的葡萄糖衍生的神经元燃料供应模式。此外,皮质神经胶质具有几种抗氧化功能,而星形胶质细胞可以作为有益的氧化还原信号的促氧化剂,用于长期记忆的基础。最后,神经胶质脂肪酸氧化似乎发挥了双重故障安全作用:首先,作为葡萄糖缺乏时的能量产生模式,其次,作为睡眠期间清除过多氧化负荷的因素。总之,这些在 中进行的综合研究表明,神经胶质代谢对行为具有决定性作用。