HDAC2 expression in parvalbumin interneurons regulates synaptic plasticity in the mouse visual cortex

Alexi Nott , Sukhee Cho , Jinsoo Seo, Li-Huei Tsai
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引用次数: 26

Abstract

An experience-dependent postnatal increase in GABAergic inhibition in the visual cortex is important for the closure of a critical period of enhanced synaptic plasticity. Although maturation of the subclass of parvalbumin (Pv)–expressing GABAergic interneurons is known to contribute to critical period closure, the role of epigenetics on cortical inhibition and synaptic plasticity has not been explored. The transcription regulator, histone deacetylase 2 (HDAC2), has been shown to modulate synaptic plasticity and learning processes in hippocampal excitatory neurons. We found that genetic deletion of HDAC2 specifically from Pv interneurons reduces inhibitory input in the visual cortex of adult mice and coincides with enhanced long-term depression that is more typical of young mice. These findings show that HDAC2 loss in Pv interneurons leads to a delayed closure of the critical period in the visual cortex and supports the hypothesis that HDAC2 is a key negative regulator of synaptic plasticity in the adult brain.

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小白蛋白中间神经元中HDAC2的表达调节小鼠视觉皮层突触可塑性
经验依赖的出生后视觉皮层gaba能抑制的增加对于突触可塑性增强的关键时期的关闭是重要的。虽然已知表达小白蛋白(Pv)的gaba能中间神经元亚类的成熟有助于关键期关闭,但表观遗传学在皮质抑制和突触可塑性中的作用尚未探讨。转录调节剂组蛋白去乙酰化酶2 (HDAC2)已被证明可以调节海马兴奋性神经元的突触可塑性和学习过程。我们发现,来自Pv中间神经元的HDAC2基因缺失减少了成年小鼠视觉皮层的抑制性输入,并与年轻小鼠更典型的长期抑郁增强相吻合。这些发现表明,Pv中间神经元的HDAC2缺失导致视觉皮层关键时期的延迟关闭,并支持HDAC2是成人大脑突触可塑性的关键负调节因子的假设。
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