Estrogen rapidly attenuates a GABA(B) response in hypothalamic neurons

被引:84
作者
Lagrange, AH [1 ]
Wagner, EJ [1 ]
Ronnekleiv, OK [1 ]
Kelly, MJ [1 ]
机构
[1] OREGON HLTH SCI UNIV,DEPT PHYSIOL & PHARMACOL,PORTLAND,OR 97201
关键词
electrophysiology; potassium conductance; opioid peptides; gonadal steroids; baclofen; gamma-aminobutyric acid; gamma-aminobutyric acid receptors;
D O I
10.1159/000127106
中图分类号
R5 [内科学];
学科分类号
1002 [临床医学]; 100201 [内科学];
摘要
GABA is a predominant neurotransmittter in the hypothalamus and an important regulator of hypothalamic function, To elucidate the cellular basis for GABAergic action in this region, we used intracellular recordings from identified hypothalamic neurons, Ninety-three percent of the mediobasal hypothalamic neurons responded to GABA(B) receptor stimulation, and the presence of bicuculline-sensitive synaptic potentials indicated a tonic, GABA(A) receptor-mediated input. Stimulation of GABA(B) receptors hyperpolarized these cells by activating an inwardly rectifying potassium conductance. We characterized GABA(B) responses by generating concentration-response curves to the GABA(B) agonist baclofen. There was heterogeneity in the responses to baclofen, with one third of the cells having low baclofen potency (EC(50) = 5.0 mu M). Two thirds of the neurons had a 4-fold higher potency (EC(50) = 1.2 mu M), larger somas and a more lateral distribution. Previous work has shown that hypothalamic GABA(B) and mu-opioid receptors open the same K+ channels and that the response to mu-opioid agonists is rapidly attenuated by 17 beta-estradiol (E(2)). In order to test the hypothesis that the coupling of GABA(B) receptors to K+ channels is also altered, baclofen concentration-response curves were generated before and after an E(2) challenge (100 nM, 20 min). Consistent with our hypothesis, the potency of baclofen was decreased nearly 4-fold in a subset of the cells that had a high potency response to baclofen. Furthermore, decreased baclofen potency only occurred in those cells in which E(2) also altered the mu-opioid responses. Therefore, our findings suggest that a discrete subpopulation of hypothalamic neurons is sensitive to estrogen actions to alter inhibitory transmission. We propose that the alteration of GABA(B) and mu-opioid input is consistent with estrogen's rapid inhibition of the reproductive axis.
引用
收藏
页码:114 / 123
页数:10
相关论文
共 55 条
[41]
THE PHARMACOLOGY AND FUNCTION OF CENTRAL GABA(B) RECEPTORS [J].
MOTT, DD ;
LEWIS, DV .
INTERNATIONAL REVIEW OF NEUROBIOLOGY, VOL 36, 1994, 36 :97-223
[42]
PRESYNAPTIC AND POSTSYNAPTIC ACTIONS OF GABA ON THE RELEASE OF HYPOTHALAMIC GONADOTROPIN-RELEASING HORMONE (GNRH) [J].
NIKOLARAKIS, KE ;
LOEFFLER, JP ;
ALMEIDA, OFX ;
HERZ, A .
BRAIN RESEARCH BULLETIN, 1988, 21 (04) :677-683
[43]
DIFFERENTIAL ACTIVATION OF GABA-A AND GABA-B RECEPTORS BY SPONTANEOUSLY RELEASED TRANSMITTER [J].
OTIS, TS ;
MODY, I .
JOURNAL OF NEUROPHYSIOLOGY, 1992, 67 (01) :227-235
[44]
PERPETUAL INHIBITORY ACTIVITY IN MAMMALIAN BRAIN-SLICES GENERATED BY SPONTANEOUS GABA RELEASE [J].
OTIS, TS ;
STALEY, KJ ;
MODY, I .
BRAIN RESEARCH, 1991, 545 (1-2) :142-150
[45]
RONNEKLEIV OK, 1990, BIOTECHNIQUES, V9, P432
[46]
LUTEINIZING-HORMONE RELEASING-FACTOR IN PITUITARY-STALK PLASMA FROM LONG-TERM OVARIECTOMIZED RATS - EFFECTS OF STEROIDS [J].
SARKAR, DK ;
FINK, G .
JOURNAL OF ENDOCRINOLOGY, 1980, 86 (03) :511-524
[47]
EVIDENCE THAT CHANGES IN THE FUNCTION OF THE SUBTYPES OF THE RECEPTORS FOR GAMMA-AMINO BUTYRIC-ACID MAY BE INVOLVED IN THE SEASONAL-CHANGES IN THE NEGATIVE-FEEDBACK EFFECTS OF ESTROGEN ON GONADOTROPIN-RELEASING-HORMONE SECRETION AND PLASMA LUTEINIZING-HORMONE LEVELS IN THE EWE [J].
SCOTT, CJ ;
CLARKE, IJ .
ENDOCRINOLOGY, 1993, 133 (06) :2904-2912
[48]
LOCALIZATION OF A-KINASE THROUGH ANCHORING PROTEINS [J].
SCOTT, JD ;
MCCARTNEY, S .
MOLECULAR ENDOCRINOLOGY, 1994, 8 (01) :5-11
[49]
ELECTROPHYSIOLOGICAL CHARACTERIZATION OF POTENT AGONISTS AND ANTAGONISTS AT PRESYNAPTIC AND POSTSYNAPTIC GABA-B RECEPTORS ON NEURONS IN RAT-BRAIN SLICES [J].
SEABROOK, GR ;
HOWSON, W ;
LACEY, MG .
BRITISH JOURNAL OF PHARMACOLOGY, 1990, 101 (04) :949-957
[50]
SYNAPTIC INPUTS TO GABA(A) AND GABA(B)RECEPTORS ORIGINATE FROM DISCRETE AFFERENT NEURONS [J].
SUGITA, S ;
JOHNSON, SW ;
NORTH, RA .
NEUROSCIENCE LETTERS, 1992, 134 (02) :207-211