Zhejiang Key Laboratory of Organ Development and Regeneration, College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou, Zhejiang, 310036, China.
Department of Neurosurgery, Nanjing Medical University Affiliated Jiangsu Cancer Hospital, Nanjing, Jiangsu, 210029, China.
Dev Neurobiol. 2017 Sep;77(8):947-962. doi: 10.1002/dneu.22480. Epub 2017 Feb 4.
Histone deacetylase 1 (HDAC1) is thought to play pivotal roles in neurogenesis and neurodegeneration. However, the role of HDAC1 in neuronal growth and structural plasticity in the developing brain in vivo remains unclear. Here, we show that in the optic tectum of Xenopus laevis, HDAC1 knockdown dramatically decreased the frequency of AMPAR-mediated synaptic currents and increased the frequency of GABAAR-mediated currents, whereas HDAC1 overexpression significantly decreased the frequency of GABAAR-mediated synaptic currents. Both HDAC1 knockdown and overexpression adversely affected dendritic arbor growth and visual experience-dependent structural plasticity. Furthermore, HDAC1 knockdown decreased BDNF expression via a mechanism that involves acetylation of specific histone H4 residues at lysine K5. In particular, the deficits in dendritic growth and visually guided avoidance behavior in HDAC1-knockdown tadpoles could be rescued by acute tectal infusion of BDNF. These results establish a relationship between HDAC1 expression, histone H4 modification and BDNF signaling in the visual-experience dependent regulation of dendritic growth, structural plasticity and function in intact animals in vivo. © 2016 Wiley Periodicals, Inc. Develop Neurobiol 77: 947-962, 2017.
组蛋白去乙酰化酶 1(HDAC1)被认为在神经发生和神经退行性变中发挥关键作用。然而,HDAC1 在体内发育中的大脑神经元生长和结构可塑性中的作用尚不清楚。在这里,我们显示在非洲爪蟾的视顶盖中,HDAC1 敲低显著降低 AMPAR 介导的突触电流的频率,并增加 GABAAR 介导的电流的频率,而 HDAC1 过表达则显著降低 GABAAR 介导的突触电流的频率。HDAC1 敲低和过表达都对树突棘生长和视觉经验依赖性结构可塑性产生不利影响。此外,HDAC1 敲低通过涉及特定组蛋白 H4 赖氨酸 K5 乙酰化的机制降低了 BDNF 的表达。特别是,HDAC1 敲低的蝌蚪中树突生长和视觉引导回避行为的缺陷可以通过急性视顶盖中 BDNF 的输注来挽救。这些结果在体内完整动物中建立了 HDAC1 表达、组蛋白 H4 修饰和 BDNF 信号之间的关系,这与视觉经验依赖性调节树突生长、结构可塑性和功能有关。©2016 年 Wiley 期刊,Inc. 发育神经生物学 77:947-962,2017.