Center of Neuropathology and Prion Research, Ludwig-Maximilians-Universität and German Center for Neurodegenerative Diseases (DZNE) Munich, 81377 Munich, Germany.
Hum Mol Genet. 2012 Feb 1;21(3):473-84. doi: 10.1093/hmg/ddr476. Epub 2011 Oct 18.
Pur-alpha (Purα) plays an important role in a variety of cellular processes including transcriptional regulation, cell proliferation and oncogenic transformation. To better understand the role of Purα in the developing and mature brain, we generated Purα-deficient mice, which we were able to raise to the age of six months. Purα(-/-) mice were born with no obvious pathological condition. We obtained convincing evidence that lack of Purα prolongs the postnatal proliferation of neuronal precursor cells both in the hippocampus and in the cerebellum, however, without affecting the overall number of postmitotic neurons. Independent of these findings, we observed alterations in the expression and distribution of the dendritic protein MAP2, the translation of which has been proposed previously to be Purα-dependent. At the age of 2 weeks, Purα(-/-) mice generated a continuous tremor which persisted throughout lifetime. Finally, adult Purα(-/-) mice displayed a megalencephaly and histopathological findings including axonal swellings and hyperphosphorylation of neurofilaments. Our studies underline the importance of Purα in the proliferation of neuronal precursor cells during postnatal brain development and suggest a role for Purα in the regulation of the expression and cellular distribution of dendritic and axonal proteins. Since recent studies implicate a link between Purα and the fragile X tremor/ataxia syndrome, our Purα(-/-) mouse model will provide new opportunities for understanding the mechanisms of neurodegeneration.
Pur-α(Purα)在多种细胞过程中发挥重要作用,包括转录调控、细胞增殖和致癌转化。为了更好地了解 Purα在发育和成熟大脑中的作用,我们生成了 Purα 缺陷型小鼠,这些小鼠能够长到六个月大。Purα(-/-) 小鼠出生时没有明显的病理状况。我们获得了令人信服的证据表明,缺乏 Purα 会延长海马体和小脑内神经元前体细胞的出生后增殖,但不会影响有丝分裂后神经元的总体数量。与这些发现无关,我们观察到树突状蛋白 MAP2 的表达和分布发生改变,先前提出该蛋白的翻译依赖于 Purα。在 2 周大时,Purα(-/-) 小鼠产生持续一生的连续震颤。最后,成年 Purα(-/-) 小鼠表现出巨脑和组织病理学发现,包括轴突肿胀和神经丝过度磷酸化。我们的研究强调了 Purα 在出生后大脑发育过程中神经元前体细胞增殖中的重要性,并表明 Purα 在调节树突状和轴突蛋白的表达和细胞分布中发挥作用。由于最近的研究表明 Purα 与脆性 X 震颤/共济失调综合征之间存在联系,我们的 Purα(-/-) 小鼠模型将为理解神经退行性变的机制提供新的机会。