DNA polymerase β deficiency leads to neurodegeneration and exacerbates Alzheimer disease phenotypes

DNA 聚合酶 β 缺乏导致神经退化并加剧阿尔茨海默病表型

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作者:Peter Sykora, Magdalena Misiak, Yue Wang, Somnath Ghosh, Giovana S Leandro, Dong Liu, Jane Tian, Beverly A Baptiste, Wei-Na Cong, Boris M Brenerman, Evandro Fang, Kevin G Becker, Royce J Hamilton, Soumya Chigurupati, Yongqing Zhang, Josephine M Egan, Deborah L Croteau, David M Wilson 3rd, Mark P Mat

Abstract

We explore the role of DNA damage processing in the progression of cognitive decline by creating a new mouse model. The new model is a cross of a common Alzheimer's disease (AD) mouse (3xTgAD), with a mouse that is heterozygous for the critical DNA base excision repair enzyme, DNA polymerase β. A reduction of this enzyme causes neurodegeneration and aggravates the AD features of the 3xTgAD mouse, inducing neuronal dysfunction, cell death and impairing memory and synaptic plasticity. Transcriptional profiling revealed remarkable similarities in gene expression alterations in brain tissue of human AD patients and 3xTg/Polβ(+/-) mice including abnormalities suggestive of impaired cellular bioenergetics. Our findings demonstrate that a modest decrement in base excision repair capacity can render the brain more vulnerable to AD-related molecular and cellular alterations.

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