Tzingounis A V, Lin C L, Rothstein J D, Kavanaugh M P
Vollum Institute, Oregon Health Sciences University, Portland, Oregon 97201, USA.
J Biol Chem. 1998 Jul 10;273(28):17315-7. doi: 10.1074/jbc.273.28.17315.
The excitatory amino acid transporter EAAT4 is expressed predominantly in Purkinje neurons in the rat cerebellum (1-3), and it participates in postsynaptic reuptake of glutamate released at the climbing fiber synapse (4). Transporter-mediated currents in Purkinje neurons are increased more than 3-fold by arachidonic acid, a second messenger that is liberated following depolarization-induced Ca2+ activation of phospholipase A2 (5). In this study we demonstrate that application of arachidonic acid to oocytes expressing rat EAAT4 increased glutamate-induced currents to a similar extent. However, arachidonic acid did not cause an increase in the rate of glutamate transport or in the chloride current associated with glutamate transport but rather activated a proton-selective conductance. These data reveal a novel action of arachidonate on a glutamate transporter and suggest a mechanism by which synaptic activity may decrease intracellular pH in neurons where this transporter is localized.
兴奋性氨基酸转运体EAAT4主要在大鼠小脑的浦肯野神经元中表达(1-3),并参与在攀缘纤维突触处释放的谷氨酸的突触后重摄取(4)。花生四烯酸可使浦肯野神经元中转运体介导的电流增加3倍以上,花生四烯酸是一种第二信使,在去极化诱导的磷脂酶A2的Ca2+激活后释放(5)。在本研究中,我们证明将花生四烯酸应用于表达大鼠EAAT4的卵母细胞可使谷氨酸诱导的电流增加到类似程度。然而,花生四烯酸并未导致谷氨酸转运速率或与谷氨酸转运相关的氯化物电流增加,而是激活了质子选择性电导。这些数据揭示了花生四烯酸对谷氨酸转运体的一种新作用,并提示了一种机制,通过该机制突触活动可能会降低该转运体所在神经元的细胞内pH值。