Townsend Matthew, Liu Yudong, Constantine-Paton Martha
Interdepartmental Neuroscience Program, Yale University, New Haven, Connecticut 06520, USA.
J Neurosci. 2004 Dec 8;24(49):11098-107. doi: 10.1523/JNEUROSCI.1207-04.2004.
We describe a homeostatic mechanism that limits NMDA receptor currents in response to early light activation of a developing visual pathway. During the second postnatal week of rodent retinocollicular development, the Ca2+-activated phosphatase calcineurin (CaN) mediates a rapid, activity-induced shortening in the decay time of NMDA receptor (NMDAR) currents. We show that protein kinase A acts in opposition to CaN to maintain NMDAR currents with long decay times. The CaN-mediated change is coincident with the initial expression of the NMDAR subunit NR2A. Using NR2A knock-out mice and dialyzing neurons with a constitutively active CaN, we demonstrate that NR2A subunits are necessary for the effect of CaN on NMDAR current kinetics. In wild-type mice, Ser900 of NR2A, previously implicated in CaN-mediated glycine-independent desensitization, becomes chronically dephosphorylated by postnatal day 11 as NMDAR current decay times become faster. Pharmacologically disrupting early photoreceptor-driven activity in the retina eliminates the dephosphorylation of NR2A and prevents the shortening in NMDAR current decay time. These data suggest that the developmental onset of retinal activity increases CaN-mediated dephosphorylation of NR2A subunits newly incorporated into synaptic NMDARs of the superior colliculus, thereby providing a mechanism for the early and rapid reduction of NMDAR current decay time in visual neurons.
我们描述了一种稳态机制,该机制可响应发育中的视觉通路的早期光激活来限制NMDA受体电流。在啮齿动物视网膜-视丘发育的出生后第二周,钙激活磷酸酶钙调神经磷酸酶(CaN)介导NMDA受体(NMDAR)电流衰减时间的快速、活性诱导缩短。我们发现蛋白激酶A与CaN起相反作用,以维持具有长衰减时间的NMDAR电流。CaN介导的变化与NMDAR亚基NR2A的初始表达同时发生。使用NR2A基因敲除小鼠并用电穿孔法将组成型活性CaN导入神经元,我们证明NR2A亚基对于CaN对NMDAR电流动力学的影响是必需的。在野生型小鼠中,NR2A先前与CaN介导的非甘氨酸依赖性脱敏有关的Ser900在出生后第11天随着NMDAR电流衰减时间变快而长期去磷酸化。药理学上破坏视网膜中早期光感受器驱动的活性可消除NR2A的去磷酸化,并防止NMDAR电流衰减时间缩短。这些数据表明,视网膜活动的发育起始增加了CaN介导的新掺入上丘突触NMDAR中的NR2A亚基的去磷酸化,从而为视觉神经元中NMDAR电流衰减时间的早期快速缩短提供了一种机制。