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Exuberant Thalamocortical Axon Arborization in Cortex-Specific NMDAR1 Knockout Mice

机译:皮质特定的NMDAR1基因敲除小鼠旺盛的丘脑皮层轴突。

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摘要

Development of whisker-specific neural patterns in the rodent somatosensory system requires NMDA receptor (NMDAR)-mediated activity. In cortex-specific NR1 knockout (CxNR1KO) mice, while thalamocortical afferents (TCAs) develop rudimentary whisker-specific patterns in the primary somatosensory (barrel) cortex, layer IV cells do not develop barrels or orient their dendrites towards TCAs. To determine the role of postsynaptic NMDARs in presynaptic afferent development and patterning in the barrel cortex, we examined the single TCA arbors in CxNR1KO mice between postnatal days (P) 1–7. Sparsely branched TCAs invade the cortical plate on P1 in CxNR1KO mice as in control mice. In control animals, TCAs progressively elaborate patchy terminals, mostly restricted to layer IV. In CxNR1KO mice, TCAs develop far more extensive arbors between P3–7. Their lateral extent is twice that of controls from P3 onwards. By P7, CxNR1KO TCAs have significantly fewer branch points and terminal endings in layers IV and VI but more in layers II/III and V than control mouse TCAs. Within expansive terminal arbors, CxNR1KO TCAs develop focal terminal densities in layer IV, corresponding to the rudimentary whisker-specific patches. Given that thalamic NMDARs are spared in CxNR1KO mice, the present results show that postsynaptic NMDARs play an important role in refinement of presynaptic afferent arbors and whisker-specific patterning in the developing barrel cortex.
机译:啮齿动物体感系统中须晶特定神经模式的发展需要NMDA受体(NMDAR)介导的活动。在皮质特异性NR1基因敲除(CxNR1KO)小鼠中,丘脑皮层传入(TCA)在初级体感(桶形)皮质中形成基本的晶须特定模式,而IV层细胞则不会形成桶状或使其树突朝向TCA。为了确定突触后NMDAR在桶状皮质中突触前传入发育和模式中的作用,我们检查了出生后第1-7天之间的CxNR1KO小鼠的单个TCA柄。与对照小鼠一样,CxNR1KO小鼠中稀疏分支的TCA侵入P1的皮质板。在对照动物中,TCA逐渐形成斑片状的末端,大部分局限于第四层。在CxNR1KO小鼠中,TCA在P3-7之间形成了更广泛的乔木。从P3开始,它们的横向范围是对照的两倍。通过P7,与对照小鼠TCA相比,CxNR1KO TCA在IV和VI层中的分支点和末端显着减少,而在II / III和V层中的分支点和末端显着增加。在膨胀的终生乔木中,CxNR1KO TCA在第IV层中形成聚焦终末密度,对应于基本的晶须特定斑块。鉴于丘脑NMDAR在CxNR1KO小鼠中尚无保留,目前的结果表明,突触后NMDAR在突触前传入树突的细化和发育中的桶皮质中晶须特有的模式中起着重要作用。

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