Molecular mechanism of pregnenolone sulfate action at NR1/NR2B receptors

被引:72
作者
Horak, M
Vlcek, K
Petrovic, M
Chodounska, H
Vyklicky, L
机构
[1] Acad Sci Czech Republ, Inst Physiol, CR-14220 Prague 4, Czech Republic
[2] Acad Sci Czech Republ, Inst Organ Chem & Biochem, CR-16610 Prague 2, Czech Republic
关键词
neurosteroids; NMDA receptor; open probability; patch-clamp recording; recombinant receptors; glutamate;
D O I
10.1523/JNEUROSCI.2099-04.2004
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
NMDA receptors are highly expressed in the CNS and are involved in excitatory synaptic transmission and synaptic plasticity as well as excitotoxicity. They have several binding sites for allosteric modulators, including neurosteroids, endogenous compounds synthesized by the nervous tissue and expected to act locally. Whole-cell patch-clamp recording from human embryonic kidney 293 cells expressing NR1-1a/NR2B receptors revealed that neurosteroid pregnenolone sulfate (PS) (300 muM), when applied to resting NMDA receptors, potentiates the amplitude of subsequent responses to 1 mM glutamate fivefold and slows their deactivation twofold. The same concentration of PS, when applied during NMDA receptor activation by 1 mM glutamate, has only a small effect. The association and dissociation rate constants of PS binding and unbinding from resting NMDA receptors are estimated to be 3.3+/-2.0 mM(-1) sec(-1) and 0.12+/-0.02 sec(-1), respectively, corresponding to an apparent affinity K-d of 37 muM. The results of experiments indicate that the molecular mechanism of PS potentiation of NMDA receptor responses is attributable to an increase in the peak channel open probability (P-o). Responses to glutamate recorded in the continuous presence of PS exhibit marked time-dependent decline. Our results indicate that the decline is induced by a change of the NMDA receptor affinity for PS after receptor activation. These results suggest that the PS is a modulator of NMDA receptor P-o, the effectiveness of which is lowered by glutamate binding. This modulation may have important consequences for the neuronal excitability.
引用
收藏
页码:10318 / 10325
页数:8
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