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Developmental presence and disappearance of postsynaptically silent synapses on dendritic spines of rat layer 2/3 pyramidal neurons

机译:大鼠2/3锥体神经元树突棘突触后沉默突触的发育存在和消失。

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摘要

Silent synapses are synapses whose activation evokes NMDA-type glutamate receptor (NMDAR) but not AMPA-type glutamate receptor (AMPAR) mediated currents. Silent synapses are prominent early in postnatal development and are thought to play a role in the activity- and sensory-dependent refinement of neuronal circuits. The mechanisms that account for their silent nature have been controversial, and both presynaptic and postsynaptic mechanisms have been proposed. Here, we use two-photon laser uncaging of glutamate to directly activate glutamate receptors and measure AMPAR- and NMDAR-dependent currents on individual dendritic spines of rat somatosensory cortical layer 2/3 pyramidal neurons. We find that dendritic spines lacking functional surface AMPARs are commonly found before postnatal day 12 (P12) but are absent in older animals. Furthermore, AMPAR-lacking spines are contacted by release-competent presynaptic terminals. After P12, the AMPAR/NMDAR current ratio at individual spines continues to increase, consistent with continued addition of AMPARs to postsynaptic terminals. Our results confirm the existence of postsynaptically silent synapses and demonstrate that the morphology of the spine is not strongly predictive of its AMPAR content.
机译:沉默突触是其激活引起NMDA型谷氨酸受体(NMDAR)而不是AMPA型谷氨酸受体(AMPAR)介导的电流的突触。沉默突触在产后发育的早期就很突出,并且被认为在神经回路的活动和感觉依赖性提炼中起作用。解释其沉默性质的机制一直存在争议,并且已经提出了突触前和突触后机制。在这里,我们使用谷氨酸的两光子激光解笼直接激活谷氨酸受体,并在大鼠体感皮质层2/3锥体神经元的单个树突棘上测量依赖于AMPAR和NMDAR的电流。我们发现,缺乏功能性表面AMPAR的树突棘通常在出生后第12天(P12)之前发现,但在较大的动物中却不存在。此外,缺少AMPAR的棘突与具有释放能力的突触前突触末端接触。在P12之后,各个棘突处的AMPAR / NMDAR电流比继续增加,这与将AMPAR持续添加到突触后末端有关。我们的结果证实了突触后沉默突触的存在,并表明脊柱的形态不能强烈预测其AMPAR含量。

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