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首页> 外文期刊>The Journal of Physiology >Enhancement of NMDA receptor-mediated currents by light in rat neurones in vitro.
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Enhancement of NMDA receptor-mediated currents by light in rat neurones in vitro.

机译:在体外大鼠神经元中光增强NMDA受体介导的电流。

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1. N-Methyl-D-aspartate (NMDA) receptor function can be modified by the action of several endogenous and exogenous modulatory processes. In the present study, we report that brief pulses of light potentiate NMDA, but not non-NMDA glutamatergic receptor-mediated whole-cell and single channel currents in rat cortical neurones in vitro. In addition, light also potentiated NMDA receptor-mediated whole-cell responses in isolated rat retinal neurones. 2. Potentiation of NMDA whole-cell currents in cortical neurones was readily observed during and following a brief (< 2 s) exposure of neurones to wavelengths of less than 324 nm of relatively bright light (0.09 microW microm-2). In addition, prolonged exposures (> 30 s) to visible wavelengths (> 380 nm) or to attenuated light (1-3 % transmittance of non-attenuated light) were also sufficient to enhance NMDA receptor-mediated responses. 3. The light-induced potentiation of NMDA receptor-mediated currents persisted for several minutes, slowly reversing to control levels with a time constant of approximately 5 min. A subsequent exposure to light could potentiate NMDA receptor-mediated currents for a second time. 4. Light did not alter the apparent affinity of the NMDA receptor for the co-agonists NMDA and glycine. Additionally, potentiation of the NMDA-induced currents was not mediated by a change in the pH sensitivity of the receptor. In excised outside-out membrane patches, the effects of light on NMDA-activated unitary currents were manifested as a twofold increase in channel open frequency without alterations in single channel amplitude or open time. 5. Our results suggest the presence of a light-sensitive moiety within the NMDA receptor, or in a closely associated structure, which affects channel properties. This previously unrecognized form of NMDA receptor modulation may provide a tool for understanding the conformational changes associated with its gating. In addition, it is possible that light may affect NMDA receptor-mediated function or dysfunction in the retina.
机译:1. N-甲基-D-天冬氨酸(NMDA)受体功能可以通过几种内源性和外源性调节过程来调节。在本研究中,我们报告了短暂的光脉冲增强了大鼠皮层神经元的NMDA,但不是非NMDA谷氨酸能受体介导的全细胞和单通道电流。此外,光还增强了离体大鼠视网膜神经元中NMDA受体介导的全细胞反应。 2.在短暂(<2 s)将神经元暴露于波长小于324 nm的相对明亮的光(0.09 microW microm-2)期间和之后,很容易观察到皮质神经元中NMDA全细胞电流的增强。此外,长时间(> 30 s)暴露于可见波长(> 380 nm)或衰减光(非衰减光的1-3%透射率)也足以增强NMDA受体介导的反应。 3. NMDA受体介导的电流的光诱导增强持续了几分钟,并以约5分钟的时间常数缓慢恢复到控制水平。随后暴露于光线下可能会第二次增强NMDA受体介导的电流。 4.光没有改变NMDA受体对共激动剂NMDA和甘氨酸的表观亲和力。另外,NMDA诱导的电流的增强不是通过受体的pH敏感性的变化来介导的。在切除的外向外膜片中,光对NMDA激活的单位电流的影响表现为通道开放频率增加了两倍,而单通道幅度或开放时间没有改变。 5.我们的结果表明,NMDA受体内或紧密相关的结构中存在光敏部分,这会影响通道特性。 NMDA受体调节的这种以前无法识别的形式可以提供一种工具,用于了解与其门控相关的构象变化。另外,光可能会影响NMDA受体介导的视网膜功能或功能障碍。

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