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TrkB在海马体谢弗侧支突触的建立中具有细胞自主作用。

TrkB has a cell-autonomous role in the establishment of hippocampal Schaffer collateral synapses.

作者信息

Luikart Bryan W, Nef Serge, Virmani Tuhin, Lush Mark E, Liu Yajuan, Kavalali Ege T, Parada Luis F

机构信息

Center for Developmental Biology and Kent Waldrep Foundation Center for Basic Neuroscience Research on Nerve Growth and Regeneration, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9133, USA.

出版信息

J Neurosci. 2005 Apr 13;25(15):3774-86. doi: 10.1523/JNEUROSCI.0041-05.2005.

Abstract

Neurotrophin signaling has been implicated in the processes of synapse formation and plasticity. To gain additional insight into the mechanism of BDNF and TrkB influence on synapse formation and synaptic plasticity, we generated a conditional knock-out for TrkB using the cre/loxp system. Using three different cre-expressing transgenic mice, three unique spatial and temporal configurations of TrkB deletion were obtained with regard to the hippocampal Schaffer collateral synapse. We compare synapse formation in mutants in which TrkB is ablated either in presynaptic or in both presynaptic and postsynaptic cells at early developmental or postdevelopmental time points. Our results indicate a requirement for TrkB at both the presynaptic and postsynaptic sites during development. In the absence of TrkB, synapse numbers were significantly reduced. In vivo ablation of TrkB after synapse formation did not affect synapse numbers. In primary hippocampal cultures, deletion of TrkB in only the postsynaptic cell, before synapse formation, also resulted in deficits of synapse formation. We conclude that TrkB signaling has a cell-autonomous role required for normal development of both presynaptic and postsynaptic components of the Schaffer collateral synapse.

摘要

神经营养因子信号传导与突触形成和可塑性过程有关。为了更深入了解脑源性神经营因子(BDNF)和酪氨酸激酶受体B(TrkB)对突触形成和突触可塑性的影响机制,我们利用cre/loxp系统构建了TrkB条件性敲除小鼠。使用三种不同的表达cre的转基因小鼠,在海马体的谢弗侧支突触方面获得了三种独特的TrkB缺失的时空构型。我们比较了在早期发育或发育后时间点,TrkB在突触前或突触前和突触后细胞中均被敲除的突变体中的突触形成情况。我们的结果表明,在发育过程中,突触前和突触后位点均需要TrkB。在没有TrkB的情况下,突触数量显著减少。突触形成后在体内敲除TrkB并不影响突触数量。在原代海马体培养物中,仅在突触形成之前在突触后细胞中敲除TrkB,也会导致突触形成缺陷。我们得出结论,TrkB信号传导在谢弗侧支突触的突触前和突触后成分的正常发育中具有细胞自主作用。

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