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Nuclear Calcium Signaling Regulates Nuclear Export of a Subset of Class IIa Histone Deacetylases following Synaptic Activity

机译:核钙信号调节突触活动后的IIa类组蛋白去乙酰化酶子集的核出口。

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摘要

In neurons, dynamic changes in the subcellular localization of histone deacetylases (HDACs) are thought to contribute to signal-regulated gene expression. Here we show that in mouse hippocampal neurons, synaptic activity-dependent nucleo-cytoplasmic shuttling is a common feature of all members of class IIa HDACs, which distinguishes them from other classes of HDACs. Nuclear calcium, a key regulator in neuronal gene expression, is required for the nuclear export of a subset of class IIa HDACs. We found that inhibition of nuclear calcium signaling using CaMBP4 or increasing the nuclear calcium buffering capacity by means of expression of a nuclear targeted version of parvalbumin (PV.NLS-mC) led to a build-up of HDAC4 and HDAC5 in the cell nucleus, which in the case of PV.NLS-mC can be reversed by nuclear calcium transients triggered by bursts of action potential firing. A similar nuclear accumulation of HDAC4 and HDAC5 was observed in vivo in the mouse hippocampus following stereotaxic delivery of recombinant adeno-associated viruses expressing either CaMBP4 or PV.NLS-mC. The modulation of HDAC4 activity either by RNA interference-mediated reduction of HDAC4 protein levels or by expression of a constitutively nuclear localized mutant of HDAC4 leads to changes in the mRNA levels of several nuclear calcium-regulated genes with known functions in acquired neuroprotection (atf3, serpinb2), memory consolidation (homer1, arc), and the development of chronic pain (ptgs2, c1qc). These results identify nuclear calcium as a regulator of nuclear export of HDAC4 and HDAC5. The reduction of nuclear localized HDACs represents a novel transcription-promoting pathway stimulated by nuclear calcium.
机译:在神经元中,组蛋白脱乙酰基酶(HDACs)的亚细胞定位的动态变化被认为有助于信号调节基因的表达。在这里,我们显示在小鼠海马神经元中,依赖于突触活动的核质穿梭是IIa类HDAC的所有成员的共同特征,这使它们与其他HDAC区别开来。 IIa类HDAC子集的核输出需要核钙,神经元基因表达中的关键调节剂。我们发现,使用CaMBP4抑制核钙信号传导或通过表达核靶向形式的小白蛋白(PV.NLS-mC)来增加核钙缓冲能力,会导致HDAC4和HDAC5在细胞核中积累,在PV.NLS-mC的情况下,可以通过触发动作电位脉冲触发的核钙瞬变来逆转。立体定向递送表达CaMBP4或PV.NLS-mC的重组腺相关病毒后,在小鼠海马体内观察到了HDAC4和HDAC5的类似核积累。通过RNA干扰介导的HDAC4蛋白水平降低或通过HDAC4的组成性核定位突变体的表达来调节HDAC4活性,从而导致一些在获得性神经保护中具有已知功能的核钙调节基因的mRNA水平发生变化(atf3, serpinb2),记忆巩固(homer1,arc)和慢性疼痛的发展(ptgs2,c1qc)。这些结果确定了核钙是HDAC4和HDAC5核出口的调节剂。核定位HDACs的减少代表核钙刺激的新型转录促进途径。

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