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  • A subthreshold synaptic mechanism regulating BDNF expression and resting synaptic strength.

A subthreshold synaptic mechanism regulating BDNF expression and resting synaptic strength.

Cell reports (2021-08-05)
Patricia M Horvath, Natali L Chanaday, Baris Alten, Ege T Kavalali, Lisa M Monteggia
摘要

Recent studies have demonstrated that protein translation can be regulated by spontaneous excitatory neurotransmission. However, the impact of spontaneous neurotransmitter release on gene transcription remains unclear. Here, we study the effects of the balance between inhibitory and excitatory spontaneous neurotransmission on brain-derived neurotrophic factor (BDNF) regulation and synaptic plasticity. Blockade of spontaneous inhibitory events leads to an increase in the transcription of Bdnf and Npas4 through altered synaptic calcium signaling, which can be blocked by antagonism of NMDA receptors (NMDARs) or L-type voltage-gated calcium channels (VGCCs). Transcription is bidirectionally altered by manipulating spontaneous inhibitory, but not excitatory, currents. Moreover, blocking spontaneous inhibitory events leads to multiplicative downscaling of excitatory synaptic strength in a manner that is dependent on both transcription and BDNF signaling. These results reveal a role for spontaneous inhibitory neurotransmission in BDNF signaling that sets excitatory synaptic strength at rest.

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脱氧核糖核酸酶 I 来源于牛胰腺, Type IV, lyophilized powder, ≥2,000 Kunitz units/mg protein
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放线菌素D, from Streptomyces sp., ~98% (HPLC)
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胞嘧啶β-D-呋喃阿拉伯糖苷 盐酸盐, crystalline
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Picrotoxin, powder
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抗磷酸化-CREB (Ser133) 抗体, Upstate®, from rabbit
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(+)-荷包牡丹碱, ≥97.0% (TLC)