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不对称扩散进入突触后神经元:一种从Deiters神经元质膜上的突触间隙清除过量γ-氨基丁酸的极其有效的机制。

Asymmetric diffusion into the postsynaptic neuron: an extremely efficient mechanism for removing excess GABA from synaptic clefts on the Deiters' neurone plasma membrane.

作者信息

Hyden H, Cupello A, Palm A

出版信息

Neurochem Res. 1986 May;11(5):695-706. doi: 10.1007/BF00965338.

Abstract

Microdissected Deiters' neuron plasma membranes have been used for studying the passage of GABA through the membrane both in the inward and outward direction. Working with 0.2 mM GABA in the compartment simulating the outside of the neurone and with 2.0 mM GABA in the one simulating the inside we found a net transport of GABA towards the inside. This mechanism does not require a Na+ ion gradient across the membrane. The nature of the transport process involved was studied by determining the rate of [3H]-GABA inward passage as a function of GABA concentration (1 nM - 800 microM) on the outward side of the membrane. The results have shown that until 50 microM a diffusion process (v = D1 X C, where D1 = 3.1 X 10(-11) 1/micron 2 X sec) is the sole mechanism involved. Above 50 microM a second diffusion process is activated v = D2 X (C - 50 X 10(-6), where D2 = 2.8 X 10(-11) 1/micron 2 X sec. Taking in account both inward and outward directed diffusion, one can calculate 16 microM as the equilibrium concentration of GABA on the outward side of the membrane. From a kinetic point of view, these diffusion processes are able to reduce GABA concentration in a synaptic cleft from 3 mM to 20 microM within 3 mu sec. These diffusion systems are discussed as extremely efficient in removing the excess of released GABA in the synaptic cleft.

摘要

经显微切割的Dieters神经元质膜已被用于研究γ-氨基丁酸(GABA)在膜内向和外向的通过情况。在模拟神经元外部的隔室中使用0.2 mM的GABA,在模拟内部的隔室中使用2.0 mM的GABA,我们发现GABA有向内部的净转运。这种机制不需要跨膜的钠离子梯度。通过测定膜外侧[³H]-GABA内向通过速率作为GABA浓度(1 nM - 800 μM)的函数,研究了所涉及的转运过程的性质。结果表明,在50 μM之前,扩散过程(v = D1×C,其中D1 = 3.1×10⁻¹¹ 1/μm²×秒)是唯一涉及的机制。高于50 μM时,第二个扩散过程被激活,v = D2×(C - 50×10⁻⁶),其中D2 = 2.8×10⁻¹¹ 1/μm²×秒。考虑到内向和外向扩散,可计算出膜外侧GABA的平衡浓度为16 μM。从动力学角度来看,这些扩散过程能够在3微秒内将突触间隙中的GABA浓度从3 mM降低到20 μM。这些扩散系统被认为在清除突触间隙中过量释放的GABA方面极其有效。

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