一个Fos神经网络的双向围体抑制可塑性
Ee-Lynn Yap1, Noah L Pettit1, Christopher P Davis1
1Department of Neurobiology, Harvard Medical School, Boston, MA, USA.
Nature
|December 10, 2020
概括
在脑细胞中激活FOS (转录因子),但这如何重新连接电路尚不清楚. 这项研究表明FOS和SCG2对神经抑制产生改变,影响记忆形成.
科学领域:
- 神经科学
- 分子生物学
- 系统神经科学
背景情况:
- 行为体验会激活特定神经元中的FOS转录因子,
- 经验驱动电路重组的机制和FOS在活动标记之外的作用尚不清楚.
研究的目的:
- 根据经验,研究FOS驱动电路重组的机制.
- 确定FOS是否需要进行电路重组,并确定其参与该过程的基因标.
主要方法:
- 研究小鼠在探索新的环境.
- 使用电生理学,单细胞RNA测序和染色体分析.
- 破坏了FOS转录因子复合物的功能.
主要成果:
- 空间探索增强了FOS激活神经元的抑制作用,但由胆囊神经元减弱了它.
- FOS激活SCG2基因转录,协调这些双向抑制变化.
- 缺少Scg2改变了海马的马节奏和甲相合.
结论:
- FOS和SCG2在重新连接局部抑制以建立模块化神经网络方面发挥了指导作用.
- 在不同的抑制路径上对抗可塑性机制可能有助于记忆巩固.
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