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尼尔 3 诱导的神经发生在临床阶段可预防朊病毒病。

Neil3 induced neurogenesis protects against prion disease during the clinical phase.

机构信息

Norwegian University of Life Sciences, Faculty of Veterinary Medicine and Biosciences, Campus Adamstuen Oslo, Norway.

Department of Cancer Research and Molecular Medicine, Norwegian University of Science and Technology, Trondheim, Norway.

出版信息

Sci Rep. 2016 Nov 25;6:37844. doi: 10.1038/srep37844.

Abstract

Base excision repair (BER) is the major pathway for repair of oxidative DNA damage. Mice with genetic knockout of the BER enzyme Neil3 display compromised neurogenesis in the sub-ventricular zone of the lateral ventricle and sub-granular layer of the dentate gyrus of the hippocampus. To elucidate the impact of oxidative DNA damage-induced neurogenesis on prion disease we applied the experimental prion disease model on Neil3-deficient mice. The incubation period for the disease was similar in both wild type and Neil3 mice and the overall neuropathology appeared unaffected by Neil3 function. However, disease in the Neil3 mice was of shorter clinical duration. We observed a mildly reduced astrogliosis in the hippocampus and striatum in the Neil3-deficient mice. Brain expression levels of neuronal progenitor markers, nestin (Nestin), sex determining region Box 2 (Sox2), Class III beta-tubulin (Tuj1) decreased towards end-stage prion disease whereas doublecortin (Dcx) levels were less affected. Neuronal nuclei (NeuN), a marker for mature neurons declined during prion disease and more pronounced in the Neil3 group. Microglial activation was prominent and appeared unaffected by loss of Neil3. Our data suggest that neurogenesis induced by Neil3 repair of oxidative DNA damage protects against prion disease during the clinical phase.

摘要

碱基切除修复 (BER) 是修复氧化 DNA 损伤的主要途径。BER 酶 Neil3 基因敲除的小鼠在侧脑室室下区和海马齿状回颗粒下层的神经发生受损。为了阐明氧化 DNA 损伤诱导的神经发生对朊病毒病的影响,我们在 Neil3 缺陷小鼠中应用了实验性朊病毒病模型。野生型和 Neil3 小鼠的疾病潜伏期相似,Neil3 功能对整体神经病理学没有影响。然而,疾病在 Neil3 小鼠中的临床持续时间较短。我们观察到 Neil3 缺陷小鼠的海马体和纹状体中的星形胶质细胞增生减少。在朊病毒病末期,神经元祖细胞标志物巢蛋白 (Nestin)、性别决定区盒 2 (Sox2)、III 类β-微管蛋白 (Tuj1) 的脑表达水平降低,而双皮质素 (Dcx) 水平的降低则不明显。神经元核 (NeuN),一种成熟神经元的标志物,在朊病毒病期间下降,在 Neil3 组中更为明显。小胶质细胞激活明显,Neil3 缺失对其无影响。我们的数据表明,由 Neil3 修复氧化 DNA 损伤诱导的神经发生在临床阶段可保护机体免受朊病毒病的侵害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9238/5122945/e9a50318084f/srep37844-f1.jpg

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