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Altered balance of glutamatergic/GABAergic synaptic input and associated changes in dendrite morphology after BDNF expression in BDNF-deficient hippocampal neurons.

机译:在缺乏BDNF的海马神经元中BDNF表达后,谷氨酸能/ GABA能突触输入的平衡改变以及树突形态的相关变化。

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摘要

Cultured neurons from bdnf-/- mice display reduced densities of synaptic terminals, although in vivo these deficits are small or absent. Here we aimed at clarifying the local responses to postsynaptic brain-derived neurotrophic factor (BDNF). To this end, solitary enhanced green fluorescent protein (EGFP)-labeled hippocampal neurons from bdnf-/- mice were compared with bdnf-/- neurons after transfection with BDNF, bdnf-/- neurons after transient exposure to exogenous BDNF, and bdnf+/+ neurons in wild-type cultures. Synapse development was evaluated on the basis of presynaptic immunofluorescence and whole-cell patch-clamp recording of miniature postsynaptic currents. It was found that neurons expressing BDNF::EGFP for at least 16 h attracted a larger number of synaptic terminals than BDNF-deficient control neurons. Transfected BDNF formed clusters in the vicinity of glutamatergic terminals and produced a stronger upregulation of synaptic terminal numbers than high levels of ambient BDNF. Glutamatergic and GABAergic synapses reacted differently to postsynaptic BDNF: glutamatergic input increased, whereas GABAergic input decreased. BDNF::EGFP-expressing neurons also differed from BDNF-deficient neurons in their dendrite morphology: they exhibited weaker dendrite elongation and stronger dendrite initiation. The upregulation of glutamatergic synaptic input and the BDNF-induced downregulation of GABAergic synaptic terminal numbers by postsynaptic BDNF depended on tyrosine receptor kinase B activity, as deduced from the blocking effects of K252a. The suppression of dendrite elongation was also prevented by block of tyrosine receptor kinase B but required, in addition, glutamate receptor activity. Dendritic length decreased with the number of glutamatergic contacts. These results illuminate the role of BDNF as a retrograde synaptic regulator of synapse development and the dependence of dendrite elongation on glutamatergic input.
机译:来自bdnf-/-小鼠的培养神经元显示出降低的突触末端密度,尽管在体内这些缺陷很小或不存在。在这里,我们旨在阐明对突触后脑源性神经营养因子(BDNF)的局部反应。为此,将来自bdnf-/-小鼠的单独增强型绿色荧光蛋白(EGFP)标记的海马神经元与BDNF转染后的bdnf-/-神经元,短暂暴露于外源BDNF和bdnf + /后的bdnf-/-神经元进行了比较。 +野生型文化中的神经元。基于突触前免疫荧光和微型突触后电流的全细胞膜片钳记录,评估突触的发育。发现表达BDNF :: EGFP的神经元至少16 h比缺乏BDNF的对照神经元吸引更多的突触末端。转染的BDNF在谷氨酸能末端附近形成簇,并比高水平的BDNF产生更强的突触末端数量上调。谷氨酸能和GABA能突触对突触后BDNF的反应不同:谷氨酸能输入增加,而GABA能输入减少。 BDNF :: EGFP表达神经元的树突形态与BDNF缺陷神经元也有所不同:它们表现出较弱的树突伸长和更强的树突起始。突触后BDNF对谷氨酸能突触输入的上调和BDNF诱导的GABA能突触终末数目的下调取决于酪氨酸受体激酶B的活性,如K252a的阻断作用所推导。酪氨酸受体激酶B的阻滞也阻止了树突伸长的抑制,但除此之外,还需要谷氨酸受体活性。树突长度随着谷氨酸能接触的数量而减少。这些结果阐明了BDNF作为突触发育的逆行突触调节剂的作用以及枝晶延伸对谷氨酸能输入的依赖性。

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