生物
神经胶质
神经科学
一元羧酸盐转运体
运动前神经元活动
细胞生物学
室管膜细胞
神经元
体内
运输机
星形胶质细胞
电生理学
中枢神经系统
生物化学
基因
生物技术
作者
Andrés González‐Gutiérrez,Andrés Ibacache,Andrés Esparza,L. Felipe Barros,Jimena Sierralta
出处
期刊:Glia
[Wiley]
日期:2019-12-26
卷期号:68 (6): 1213-1227
被引量:31
摘要
Abstract Lactate/pyruvate transport between glial cells and neurons is thought to play an important role in how brain cells sustain the high‐energy demand that neuronal activity requires. However, the in vivo mechanisms and characteristics that underlie the transport of monocarboxylates are poorly described. Here, we use Drosophila expressing genetically encoded FRET sensors to provide an ex vivo characterization of the transport of monocarboxylates in motor neurons and glial cells from the larval ventral nerve cord. We show that lactate/pyruvate transport in glial cells is coupled to protons and is more efficient than in neurons. Glial cells maintain higher levels of intracellular lactate generating a positive gradient toward neurons. Interestingly, during high neuronal activity, raised lactate in motor neurons is dependent on transfer from glial cells mediated in part by the previously described monocarboxylate transporter Chaski, providing support for in vivo glia‐to‐neuron lactate shuttling during neuronal activity.
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