Fernández-Moncada Ignacio, Robles-Maldonado Daniel, Castro Pablo, Alegría Karin, Epp Robert, Ruminot Iván, Barros Luis Felipe
Centro de Estudios Científicos, Valdivia, Chile.
INSERM U1215 NeuroCentre Magendie, Bordeaux, France.
Glia. 2021 Apr;69(4):1012-1021. doi: 10.1002/glia.23944. Epub 2020 Dec 5.
The acute rise in interstitial K that accompanies neural activity couples the energy demand of neurons to the metabolism of astrocytes. The effects of elevated K on astrocytes include activation of aerobic glycolysis, inhibition of mitochondrial respiration and the release of lactate. Using a genetically encoded FRET glucose sensor and a novel protocol based on 3-O-methylglucose trans-acceleration and numerical simulation of glucose dynamics, we report that extracellular K is also a potent and reversible modulator of the astrocytic glucose transporter GLUT1. In cultured mouse astrocytes, the stimulatory effect developed within seconds, engaged both the influx and efflux modes of the transporter, and was detected even at 1 mM incremental K . The modulation of GLUT1 explains how astrocytes are able to maintain their glucose pool in the face of strong glycolysis stimulation. We propose that the stimulation of GLUT1 by K supports the production of lactate by astrocytes and the timely delivery of glucose to active neurons.
伴随神经活动而出现的细胞间质钾离子急性升高,将神经元的能量需求与星形胶质细胞的代谢联系起来。细胞外钾离子升高对星形胶质细胞的影响包括激活有氧糖酵解、抑制线粒体呼吸以及释放乳酸。我们使用一种基因编码的荧光共振能量转移(FRET)葡萄糖传感器,以及基于3 - O - 甲基葡萄糖转运加速和葡萄糖动力学数值模拟的新方案,发现细胞外钾离子也是星形胶质细胞葡萄糖转运蛋白GLUT1的一种强效且可逆的调节剂。在培养的小鼠星形胶质细胞中,这种刺激作用在数秒内就会产生,涉及转运蛋白的流入和流出模式,甚至在钾离子浓度增加1 mM时也能检测到。GLUT1的这种调节作用解释了星形胶质细胞如何在强烈的糖酵解刺激下维持其葡萄糖储备。我们提出,钾离子对GLUT1的刺激作用有助于星形胶质细胞产生乳酸,并及时将葡萄糖输送到活跃的神经元。