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老年大鼠前脑神经元中佛波酯-12,13-二丁酸促进的L-谷氨酸转运的选择性丧失。

Selective loss of phorbol-12,13-dibutyrate-facilitated L-glutamate transport in forebrain neurons of aged rats.

作者信息

Daniels K K, Vickroy T W

机构信息

Department of Neuroscience, University of Florida, Gainesville 32610-0144, USA.

出版信息

J Gerontol A Biol Sci Med Sci. 1998 Nov;53(6):B449-51. doi: 10.1093/gerona/53a.6.b449.

Abstract

Phorbol-12,13-dibutyrate (PDBu), an activator of protein kinase C, was used to evaluate potential age-related changes in phosphorylation-dependent facilitation of high-affinity L-glutamate uptake in the rat central nervous system (CNS). Forebrain homogenates from male Fischer-344/brown Norway F1 hybrid rats were separated into glia-enriched (glial plasmalemmal vesicles) and neuron-enriched fractions (synaptosomes) and assayed for sodium-dependent transport of L-[3H]glutamate. Glial fractions from rats aged 5, 25, 31, and 37 months exhibited similar rates of basal L-[3H]glutamate transport and demonstrated no significant age-related differences with respect to the maximal facilitatory effect of PDBu (1-100 microM). In contrast, neuronal fractions exhibited an age-related decline in both indices, with basal L-[3H]glutamate transport decreasing from 710+/-31 to 560+/-40 pmoL/mg protein/90 s for the 5- and 37-month groups, respectively (p < .03) and PDBu having a significantly attenuated effect in aged animals. Together, these results provide support for the hypothesis that aging is associated with a decrease in the number of neuronal L-glutamate transporters as well as a diminished capacity to up-regulate these transporters through a protein kinase C-dependent pathway.

摘要

佛波醇-12,13-二丁酸酯(PDBu)是一种蛋白激酶C激活剂,用于评估大鼠中枢神经系统(CNS)中与年龄相关的、磷酸化依赖性促进高亲和力L-谷氨酸摄取的潜在变化。将雄性Fischer-344/棕色挪威F1杂交大鼠的前脑匀浆分离为富含胶质细胞的部分(胶质细胞质膜囊泡)和富含神经元的部分(突触体),并测定L-[3H]谷氨酸的钠依赖性转运。来自5、25、31和37月龄大鼠的胶质细胞部分表现出相似的基础L-[3H]谷氨酸转运速率,并且在PDBu(1-100 microM)的最大促进作用方面未显示出与年龄相关的显著差异。相比之下,神经元部分在这两个指标上均表现出与年龄相关的下降,5月龄和37月龄组的基础L-[3H]谷氨酸转运分别从710±31降至560±40 pmol/mg蛋白/90秒(p <.03),并且PDBu在老年动物中的作用明显减弱。总之,这些结果支持了以下假设:衰老与神经元L-谷氨酸转运体数量减少以及通过蛋白激酶C依赖性途径上调这些转运体的能力下降有关。

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