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培养的伯格曼胶质细胞中GLAST/EAAT1的调节:一氧化氮/环磷酸鸟苷信号通路的作用

GLAST/EAAT1 regulation in cultured Bergmann glia cells: role of the NO/cGMP signaling pathway.

作者信息

Balderas Alberto, Guillem Alain M, Martínez-Lozada Zila, Hernández-Kelly Luisa C, Aguilera José, Ortega Arturo

机构信息

Departamento de Genética y Biología Molecular, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Apartado Postal 14-740, México DF 07000, Mexico.

Departamento de Genética y Biología Molecular, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Apartado Postal 14-740, México DF 07000, Mexico; Institut de Neurosciénces i Departament de Bioquímica i Biología Molecular, Universitat Autònoma de Barcelona, Cerdanyola del Vallès, Barcelona, Spain.

出版信息

Neurochem Int. 2014 Jul;73:139-45. doi: 10.1016/j.neuint.2013.10.011. Epub 2013 Nov 6.

Abstract

Glutamate, the major excitatory amino acid, activates a wide variety of signal transduction cascades. Ionotropic and metabotropic glutamate receptors are critically involved in long-term synaptic changes, although recent findings suggest that the electrogenic Na(+)-dependent glutamate transporters, responsible for its removal from the synaptic cleft participate in the signaling transactions triggered by this amino acid. Glutamate transporters are profusely expressed in glia therefore most of its uptake occurs in this cellular compartment. In the cerebellar cortex, Bergmann glial cells enwrap glutamatergic synapses and participate in the recycling of its neurotransmitter through the glutamate/glutamine shuttle. It has long been acknowledged that glutamatergic transmission in the cerebellar molecular layer results in cGMP accumulation within Bergmann glia cells. In this context, we decided to investigate a plausible role of the nitric oxide/cGMP-signaling pathway in the regulation of Bergmann glia glutamate transporters. To this end, the well-established model of primary cultures of chick cerebellar Bergmann glial cells was used. Confluent monolayers were exposed to the nitric oxide donor, sodium nitroprusside, or to the non-hydrolysable cGMP analog dbcGMP and the [(3)H] D-aspartate uptake activity measured. An increase in uptake activity, related to an augmentation in VMax, was detected with both treatments. The signaling cascade includes NO/cGMP/PKG and Ca(2+) influx through the Na(+)/Ca(2+) exchanger and might be related to the plasma membrane glutamate transporters turnover. Interestingly enough, an inhibitor of the cGMP dependent protein kinase was capable to abolish the sodium nitroprusside induced Ca(2+) influx. These results provide an insight into the physiological role of cGMP in the cerebellum.

摘要

谷氨酸是主要的兴奋性氨基酸,可激活多种信号转导级联反应。离子型和代谢型谷氨酸受体在长期突触变化中起关键作用,尽管最近的研究结果表明,负责将其从突触间隙清除的电生性钠依赖性谷氨酸转运体参与了由该氨基酸触发的信号传递过程。谷氨酸转运体在胶质细胞中大量表达,因此其摄取大多发生在这个细胞区室中。在小脑皮质中,伯格曼胶质细胞包裹着谷氨酸能突触,并通过谷氨酸/谷氨酰胺穿梭参与其神经递质的再循环。长期以来,人们一直认为小脑分子层中的谷氨酸能传递会导致伯格曼胶质细胞内cGMP积累。在此背景下,我们决定研究一氧化氮/cGMP信号通路在调节伯格曼胶质细胞谷氨酸转运体中的可能作用。为此,使用了成熟的鸡小脑伯格曼胶质细胞原代培养模型。将汇合的单层细胞暴露于一氧化氮供体硝普钠或不可水解的cGMP类似物二丁酰环磷腺苷,并测量[³H] D-天冬氨酸摄取活性。两种处理均检测到摄取活性增加,这与VMax的增加有关。信号级联包括NO/cGMP/PKG以及通过钠/钙交换器的钙内流,可能与质膜谷氨酸转运体的周转有关。有趣的是,cGMP依赖性蛋白激酶的抑制剂能够消除硝普钠诱导的钙内流。这些结果为cGMP在小脑中的生理作用提供了见解。

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