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无晶状体和Pitx3基因敲除突变体的表型分离表明,Pitx3缺乏会增强特定运动成分的巩固。

Phenotypic segregation of aphakia and Pitx3-null mutants reveals that Pitx3 deficiency increases consolidation of specific movement components.

作者信息

Kas Martien J H, van der Linden Annemarie J A, Oppelaar Hugo, von Oerthel Lars, Ramakers Geert M J, Smidt Marten P

机构信息

Rudolf Magnus Institute of Neuroscience, Department of Pharmacology and Anatomy, University Medical Centre Utrecht, Universiteitsweg 100, 3584 CG Utrecht, The Netherlands.

出版信息

Behav Brain Res. 2008 Jan 25;186(2):208-14. doi: 10.1016/j.bbr.2007.08.032. Epub 2007 Aug 31.

Abstract

Deficiency of the meso-diencephalic dopamine (mdDA) neuron specific transcription factor Pitx3 in aphakia (ak) mice results in the loss of the substantia nigra compacta (SNc). Concomitantly, reduced spontaneous locomotor behavior, symptoms reminiscent to those in Parkinson's disease, has been reported. However, the ak mouse line originates from the 1960s and has been compared to C57BL/6J inbred controls. Therefore, to define Pitx3 gene function in baseline and novelty-induced locomotor behavior and mdDA neuronal activity, we analyzed Pitx3-deficiency in a controlled genetic and epigenetic background. The analysis implicated that, in contrast to the controversial and previously reported hypo-activity in ak mice, Pitx3-/- mice showed normal dark phase motor activity levels. Our data also revealed that ak and Pitx3-/- mice both display a similar neuro-anatomical and physiological phenotype, and, interestingly, showed increased spontaneous home cage activity levels during their habitual sleep phase. Further behavioral analysis revealed that both ak and Pitx3-/- mice have reduced transitions but increased consolidation of specific locomotor behaviors, such as rearing and horizontal movement. Thus, Pitx3 is not involved in the expression of nighttime motor activity levels, but is critical for selective mdDA neuronal activity and associated with increased consolidation of movement.

摘要

无晶状体(ak)小鼠中脑 - 间脑多巴胺(mdDA)神经元特异性转录因子Pitx3的缺乏导致黑质致密部(SNc)缺失。同时,有报道称其自发运动行为减少,出现类似帕金森病的症状。然而,ak小鼠品系起源于20世纪60年代,一直与C57BL / 6J近交系对照进行比较。因此,为了确定Pitx3基因在基线和新奇诱导的运动行为以及mdDA神经元活动中的功能,我们在可控的遗传和表观遗传背景下分析了Pitx3缺陷。分析表明,与ak小鼠中存在争议且先前报道的活动不足相反,Pitx3 - / - 小鼠在暗期运动活动水平正常。我们的数据还显示,ak和Pitx3 - / - 小鼠均表现出相似的神经解剖学和生理学表型,有趣的是,它们在习惯睡眠阶段的自发笼内活动水平增加。进一步的行为分析表明,ak和Pitx3 - / - 小鼠的特定运动行为(如直立和水平移动)的转换减少但巩固增加。因此,Pitx3不参与夜间运动活动水平的表达,但对选择性mdDA神经元活动至关重要,并与运动巩固增加相关。

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