Synaptic and extrasynaptic GABA-A and GABA-B receptors in the globus pallidus: An electron microscopic immunogold analysis in monkeys

被引:31
作者
Charara, A
Pare, JF
Levey, AI
Smith, Y
机构
[1] Emory Univ, Yerkes Natl Primate Res Ctr, Atlanta, GA 30329 USA
[2] Univ Pittsburgh, Dept Neurosci, Pittsburgh, PA USA
[3] Emory Univ, Dept Neurol, Atlanta, GA 30329 USA
关键词
post-embedding; striatopallidal; high pressure freezing; subthalamic nucleus; Parkinson's disease; extra-synaptic receptor; pallidum;
D O I
10.1016/j.neuroscience.2004.12.004
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
GABA-A and GABA-B receptors mediate differential effects in the CNS. To better understand the role of these receptors in regulating pallidal functions, we compared their subcellular and subsynaptic localization in the external and internal segments of the globus pallidus (GPe and GPi) in monkeys, using pre- and post-embedding immunocytochemistry with antibodies against GABA-A (alpha 1, beta 2/3 subunits) and GABA-BR1 receptor subtype. Our results demonstrate that GABA-A and GABA-B receptors display a differential pattern of subcellular and subsynaptic localization in both segments of the globus pallidus. The majority of GABA-BR1 immunolabeling is intracellular, whereas immunoreactivity for GABA-A receptor subunits is mostly bound to the plasma membrane. A significant proportion of both GABA-BR1 and GABA-A receptor immunolabeling is extrasynaptic, but GABA-A receptor subunits also aggregate in the main body of putative GABAergic symmetric synapses established by striatal- and pallidal-like terminals. GABA-BR1 immunoreactivity is expressed presynaptically in putative glutamatergic terminals, while GABA-A alpha 1 and beta 2/3 receptor subunits are exclusively post-synaptic and often coexist at individual symmetric synapses in both GPe and GPi. In conclusion, our findings corroborate the concept that ionotropic and metabotropic GABA receptors are located to subserve different effects in pallidal neurons. Although the aggregation of GABA-A receptors at symmetric synapses is consistent with their role in fast inhibitory synaptic transmission, the extrasynaptic distribution of both GABA-A and GABA-B receptors provides a substrate for complex modulatory functions that rely predominantly on the spillover of GABA. (c) 2005 Published by Elsevier Ltd on behalf of IBRO.
引用
收藏
页码:917 / 933
页数:17
相关论文
共 113 条
[1]   NONVESICULAR RELEASE OF NEUROTRANSMITTER [J].
ATTWELL, D ;
BARBOUR, B ;
SZATKOWSKI, M .
NEURON, 1993, 11 (03) :401-407
[2]   STOICHIOMETRY OF A RECOMBINANT GABA(A) RECEPTOR DEDUCED FROM MUTATION-INDUCED RECTIFICATION [J].
BACKUS, KH ;
ARIGONI, M ;
DRESCHER, U ;
SCHEURER, L ;
MALHERBE, P ;
MOHLER, H ;
BENSON, JA .
NEUROREPORT, 1993, 5 (03) :285-288
[3]   Hetero-oligomerization between GABAA and GABAB receptors regulates GABAB receptor trafficking [J].
Balasubramanian, S ;
Teissére, JA ;
Raju, DV ;
Hall, RA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (18) :18840-18850
[4]   Kinetic differences between synaptic and extrasynaptic GABAA receptors in CA1 pyramidal cells [J].
Banks, MI ;
Pearce, RA .
JOURNAL OF NEUROSCIENCE, 2000, 20 (03) :937-948
[5]   HIGH-RESOLUTION IMMUNOGOLD LOCALIZATION OF AMPA TYPE GLUTAMATE-RECEPTOR SUBUNITS AT SYNAPTIC AND NONSYNAPTIC SITES IN RAT HIPPOCAMPUS [J].
BAUDE, A ;
NUSSER, Z ;
MOLNAR, E ;
MCILHINNEY, RAJ ;
SOMOGYI, P .
NEUROSCIENCE, 1995, 69 (04) :1031-1055
[6]   REVERSAL OF EXPERIMENTAL PARKINSONISM BY LESIONS OF THE SUBTHALAMIC NUCLEUS [J].
BERGMAN, H ;
WICHMANN, T ;
DELONG, MR .
SCIENCE, 1990, 249 (4975) :1436-1438
[7]  
Bernard V, 1997, J NEUROSCI, V17, P819
[8]   Subcellular and subsynaptic distribution of the NR1 subunit of the NMDA receptor in the neostriatum and globus pallidus of the rat: co-localization at synapses with the GluR2/3 subunit of the AMPA receptor [J].
Bernard, V ;
Bolam, JP .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1998, 10 (12) :3721-3736
[9]   GABAB receptors:: drugs meet clones [J].
Bettler, B ;
Kaupmann, K ;
Bowery, N .
CURRENT OPINION IN NEUROBIOLOGY, 1998, 8 (03) :345-350
[10]   GABAB receptor heterodimer-component localisation in human brain [J].
Billinton, A ;
Ige, AO ;
Wise, A ;
White, JH ;
Disney, GH ;
Marshall, FH ;
Waldvogel, HJ ;
Faull, RLM ;
Emson, PC .
MOLECULAR BRAIN RESEARCH, 2000, 77 (01) :111-124