Department of Neurobiology, Civitan International Research Center, The University of Alabama at Birmingham, SHEL-1002, 1825 University Boulevard, Birmingham, AL 35294-2182, USA.
Neural Plast. 2012;2012:203536. doi: 10.1155/2012/203536. Epub 2012 Jul 3.
Brain-derived neurotrophic factor (BDNF) is well known as a survival factor during brain development as well as a regulator of adult synaptic plasticity. One potential mechanism to initiate BDNF actions is through its modulation of quantal presynaptic transmitter release. In response to local BDNF application to CA1 pyramidal neurons, the frequency of miniature excitatory postsynaptic currents (mEPSC) increased significantly within 30 seconds; mEPSC amplitude and kinetics were unchanged. This effect was mediated via TrkB receptor activation and required both full intracellular Ca(2+) stores as well as extracellular Ca(2+). Consistent with a role of Ca(2+)-permeable plasma membrane channels of the TRPC family, the inhibitor SKF96365 prevented the BDNF-induced increase in mEPSC frequency. Furthermore, labeling presynaptic terminals with amphipathic styryl dyes and then monitoring their post-BDNF destaining in slice cultures by multiphoton excitation microscopy revealed that the increase in frequency of mEPSCs reflects vesicular fusion events. Indeed, BDNF application to CA3-CA1 synapses in TTX rapidly enhanced FM1-43 or FM2-10 destaining with a time course that paralleled the phase of increased mEPSC frequency. We conclude that BDNF increases mEPSC frequency by boosting vesicular fusion through a presynaptic, Ca(2+)-dependent mechanism involving TrkB receptors, Ca(2+) stores, and TRPC channels.
脑源性神经营养因子(BDNF)是一种在大脑发育过程中作为存活因子,以及调节成人突触可塑性的物质。启动 BDNF 作用的一个潜在机制是通过其对量子突触前递质释放的调制。在 CA1 锥体神经元中局部应用 BDNF 后,在 30 秒内,微小兴奋性突触后电流(mEPSC)的频率显著增加;mEPSC 幅度和动力学不变。这种效应是通过 TrkB 受体的激活介导的,需要完整的细胞内 Ca(2+)储存库和细胞外 Ca(2+)。与 TRPC 家族的 Ca(2+)通透性质膜通道的作用一致,抑制剂 SKF96365 阻止了 BDNF 诱导的 mEPSC 频率增加。此外,用两亲性 styryl 染料标记突触前末梢,然后通过多光子激发显微镜在切片培养物中监测 BDNF 后的末梢脱染,显示 mEPSC 频率的增加反映了囊泡融合事件。事实上,BDNF 应用于 TTX 中的 CA3-CA1 突触可以快速增强 FM1-43 或 FM2-10 的脱染,其时间过程与增加的 mEPSC 频率的相位相平行。我们得出结论,BDNF 通过增强囊泡融合来增加 mEPSC 频率,这是一种涉及 TrkB 受体、Ca(2+)储存库和 TRPC 通道的 Ca(2+)依赖性的突触前机制。