侧面预突触抑制通过嗅觉电路中获得控制
Shawn R Olsen1, Rachel I Wilson
1Department of Neurobiology, Harvard Medical School, 220 Longwood Avenue, Boston, Massachusetts 02115, USA.
Nature
|March 18, 2008
概括
删除细胞间输入扩大了Drosophila嗅觉神经元中的气味调节. 这表明抑制性交叉声占主导地位,在天线叶中塑造嗅觉处理.
科学领域:
- 神经科学是一个神经科学.
- 嗅觉系统研究研究 嗅觉系统研究
- 昆虫的嗅觉是昆虫的嗅觉
背景情况:
- 嗅觉信号由嗅觉受体处理,每个受体都与特定的大脑质结合在一起.
- 细胞间杂交在塑造第二阶神经元的嗅觉反应中的作用尚不清楚.
研究的目的:
- 为了研究细胞间相互作用如何影响第二阶层嗅觉神经元的气味反应.
- 为了确定Drosophila天线叶中的细胞间信号的性质 (抑制性或刺激性) 和位置.
主要方法:
- 选择性去除Drosophila中被遗传识别的第二阶嗅觉神经元的细胞间输入.
- 在删除输入后,分析这些神经元中的气味调节变化.
- 对介导细胞间抑制的前突触位和受体类型的研究.
主要成果:
- 移除细胞间输入扩大了第二阶层嗅觉神经元的气味调.
- 这种扩大表明,球体间抑制在激发上占主导地位.
- 抑制信号强度与总前输入相比变大,并且在全球粒体中显示出类似的调.
结论:
- 球体间抑制在形成叶的嗅觉处理方面发挥着重要作用.
- 这种抑制作用是预突触的,由离子热受体和转基因热受体介导.
- 了解这些抑制机制对于理解嗅觉信息处理至关重要.
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