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急性和慢性干扰 BDNF/TrkB 信号会选择性地损害小鼠海马 CA3 区苔藓纤维突触的 LTP。

Acute and chronic interference with BDNF/TrkB-signaling impair LTP selectively at mossy fiber synapses in the CA3 region of mouse hippocampus.

机构信息

Institute of Physiology, Medical Faculty, Otto-von-Guericke-University Magdeburg, Germany.

出版信息

Neuropharmacology. 2013 Aug;71:247-54. doi: 10.1016/j.neuropharm.2013.03.041. Epub 2013 Apr 12.

DOI:10.1016/j.neuropharm.2013.03.041
PMID:23587649
Abstract

Brain-derived neurotrophic factor (BDNF) signaling via TrkB crucially regulates synaptic plasticity in the brain. Although BDNF is abundant at hippocampal mossy fiber (MF) synapses, which critically contribute to hippocampus dependent memory, its role in MF synaptic plasticity (long-term potentiation, LTP) remained largely unclear. Using field potential recordings in CA3 of adult heterozygous BDNF knockout (ko, BDNF+/-) mice we observed impaired (∼50%) NMDAR-independent MF-LTP. In contrast to MF synapses, LTP at neighboring associative/commissural (A/C) fiber synapses remained unaffected. To exclude that impaired MF-LTP in BDNF+/- mice was due to developmental changes in response to chronically reduced BDNF levels, and to prove the importance of acute availability of BDNF in MF-LTP, we also tested effects of acute interference with BDNF/TrkB signaling. Inhibition of TrkB tyrosine kinase signaling with k252a, or with the selective BDNF scavenger TrkB-Fc, both inhibited MF-LTP to the same extent as observed in BDNF+/- mice. Basal synaptic transmission, short-term plasticity, and synaptic fatigue during LTP induction were not significantly altered by treatment with k252a or TrkB-Fc, or by chronic BDNF reduction in BDNF+/- mice. Since the acute interference with BDNF-signaling did not completely block MF-LTP, our results provide evidence that an additional mechanism besides BDNF induced TrkB signaling contributes to this type of LTP. Our results prove for the first time a mechanistic action of acute BDNF/TrkB signaling in presynaptic expression of MF-LTP in adult hippocampus.

摘要

脑源性神经营养因子(BDNF)通过 TrkB 的信号传导对大脑中的突触可塑性起着至关重要的调节作用。虽然 BDNF 在海马苔藓纤维(MF)突触中含量丰富,而 MF 突触对海马依赖型记忆至关重要,但 BDNF 在 MF 突触可塑性(长时程增强,LTP)中的作用在很大程度上仍不清楚。我们使用成年杂合 BDNF 敲除(ko,BDNF+/-)小鼠 CA3 中的场电位记录,观察到 NMDAR 非依赖性 MF-LTP 受损(约 50%)。与 MF 突触相反,相邻的关联/连合(A/C)纤维突触的 LTP 不受影响。为了排除 BDNF+/- 小鼠中 MF-LTP 受损是由于慢性 BDNF 水平降低导致的发育变化,并且为了证明急性 BDNF 可用性在 MF-LTP 中的重要性,我们还测试了急性干扰 BDNF/TrkB 信号的作用。用 k252a 或选择性 BDNF 清除剂 TrkB-Fc 抑制 TrkB 酪氨酸激酶信号,均会导致 MF-LTP 抑制到与 BDNF+/- 小鼠中观察到的相同程度。用 k252a 或 TrkB-Fc 处理,或用慢性 BDNF 降低 BDNF+/- 小鼠中的 BDNF 水平,均不会显著改变基础突触传递、短期可塑性和 LTP 诱导期间的突触疲劳。由于急性干扰 BDNF 信号并未完全阻断 MF-LTP,因此我们的结果提供了证据,表明除了 BDNF 诱导的 TrkB 信号之外,还有另一种机制有助于这种类型的 LTP。我们的结果首次证明了急性 BDNF/TrkB 信号在成年海马 MF-LTP 的突触前表达中的机制作用。

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