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发育中神经末梢颗粒中的高亲和力γ-氨基丁酸和谷氨酸转运

High-affinity GABA and glutamate transport in developing nerve ending particles.

作者信息

Hitzemann R J, Loh H H

出版信息

Brain Res. 1978 Dec 22;159(1):29-40. doi: 10.1016/0006-8993(78)90107-5.

Abstract

The high-affinity transport of [3H]GABA and [14C]glutamate was measured in discrete nerve ending fractions isolated from the developing rat cortex, beginning on day 7 postpartum and prepared using discontinuous Ficoll-isotonic sucrose gradients. On day 7 the material sedimenting in the lightest gradient fractions contained the highest density of particles capable of high-affinity transport. With increasing age, the transport sites became progressively associated with more dense particles in the gradient. On day 14, the Vmax values for both [3H]GABA and [14C-A1glutamate transport in the most dense nerve ending fraction were significantly increased over the adult value. This transient increase in the Vmax values disappeared by day 21. While the Km values for both transport systems were constant in all fractions for the adult animal, this was not the case in the developing pup. The Km values in the lightest fractions were significantly greater than those in the more dense fractions, suggesting that different transport systems may be present during development. Electron micrographs of the various fractions were prepared from 7-day and adult animals. These data illustrate that the lightest fractions of the '7-day' gradient are enriched in profiles similar to developing nerve endings. With development, these light fractions become infiltrated with myelin, the immature nerve ending profiles disappear, and the bulk of the nerve endings are found in more dense fractions.

摘要

从产后第7天开始,使用不连续的Ficoll-等渗蔗糖梯度制备从发育中的大鼠皮质分离出的离散神经末梢部分,测量其中[3H]GABA和[14C]谷氨酸的高亲和力转运。在第7天,沉淀在最轻梯度部分的物质含有能够进行高亲和力转运的颗粒的最高密度。随着年龄的增长,转运位点逐渐与梯度中密度更高的颗粒相关联。在第14天,最致密神经末梢部分中[3H]GABA和[14C]谷氨酸转运的Vmax值显著高于成年值。这种Vmax值的短暂增加在第21天消失。虽然成年动物所有部分中两种转运系统的Km值是恒定的,但在发育中的幼崽中情况并非如此。最轻部分的Km值显著大于密度更高部分的Km值,这表明发育过程中可能存在不同的转运系统。从7日龄和成年动物制备了各部分的电子显微镜照片。这些数据表明,“7日龄”梯度中最轻的部分富含类似于发育中神经末梢的形态。随着发育,这些轻部分被髓磷脂浸润,未成熟的神经末梢形态消失,大部分神经末梢出现在密度更高的部分。

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