首页> 外文期刊>Journal of Neuroscience Research >Conditional deletion of histone deacetylase-4 in the central nervous system has no major effect on brain architecture or neuronal viability
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Conditional deletion of histone deacetylase-4 in the central nervous system has no major effect on brain architecture or neuronal viability

机译:在中枢神经系统中有条件地删除组蛋白脱乙酰基酶4对脑结构或神经元生存力没有重大影响

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Evidence from different laboratories using cell culture and in vivo model systems indicates that histone deacetylase-4 (HDAC4) plays an essential role in maintaining neuronal survival. Indeed, HDAC4 null knockout mice, which die within 2 weeks of birth, display cerebellar degeneration, whereas RNAi-mediated knockdown of HDAC4 expression in the retina of normal mice leads to apoptosis of retinal neurons. As a step toward analyzing the role of HDAC4 in the regulation of neuronal survival in more detail, we generated two separate lines of conditional knockout mice by breeding HDAC4-flox mice with mice expressing Cre recombinase through a Thy1 or nestin promoter. Surprisingly, both Thy1-Cre/HDAC4-/- mice, in which HDAC4 is ablated in neurons of the cortex and hippocampus, as well as Nes-Cre/HDAC4-/- mice, in which HDAC4 is ablated in neural progenitor cells of the CNS, appear normal at birth, have normal body weight, are fertile, and perform normally in locomotor activity assays. Histological analysis of the brains of Nes-Cre/HDAC4-/- mice revealed no obvious abnormalities in cytoarchitecture. Immunohistological analysis of tyrosine hydroxylase and calbindin also showed no discernible defects. Terminal deoxynucleotidyl transferase dUTP nick end-labeling staining showed no difference in the level of neuronal death in the cortex and cerebellum of Nes-Cre/HDAC4-/- mice compared with controls. These results indicate that neurons are less dependent on HDAC4 expression for their survival than previously believed and suggest that neuronal death observed in HDAC4 null knockout mice and after RNAi injection may result from HDAC4 deficiency in nonneural cells.
机译:来自使用细胞培养和体内模型系统的不同实验室的证据表明,组蛋白脱乙酰基酶4(HDAC4)在维持神经元存活中起着至关重要的作用。实际上,在出生后两周内死亡的HDAC4空敲除小鼠表现出小脑变性,而正常小鼠视网膜中RNAi介导的HDAC4表达的敲低导致视网膜神经元凋亡。为了更详细地分析HDAC4在调节神经元存活中的作用,我们通过将HDAC4-flox小鼠与通过Thy1或nestin启动子表达Cre重组酶的小鼠进行繁殖,生成了两条分离的条件敲除小鼠品系。出人意料的是,在皮质和海马神经元中消融了HDAC4的Thy1-Cre / HDAC4-/-小鼠,以及在皮质神经元和海马中消融了HDAC4的Nes-Cre / HDAC4-/-小鼠。中枢神经系统在出生时表现正常,体重正常,可生育,并且在运动活性测定中表现正常。 Nes-Cre / HDAC4-/-小鼠大脑的组织学分析显示,细胞结构没有明显异常。酪氨酸羟化酶和钙结合蛋白的免疫组织学分析也没有发现明显的缺陷。末端脱氧核苷酸转移酶dUTP缺口末端标记染色显示,与对照组相比,Nes-Cre / HDAC4-/-小鼠皮质和小脑的神经元死亡水平无差异。这些结果表明,神经元的存活比以前认为的要少依赖HDAC4表达,这表明在HDAC4空敲除小鼠中以及在RNAi注射后观察到的神经元死亡可能是由非神经细胞中的HDAC4缺乏引起的。

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