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绿茶多酚对由DYRK1A过表达诱导的脑缺陷的挽救作用。

Green tea polyphenols rescue of brain defects induced by overexpression of DYRK1A.

作者信息

Guedj Fayçal, Sébrié Catherine, Rivals Isabelle, Ledru Aurelie, Paly Evelyne, Bizot Jean C, Smith Desmond, Rubin Edward, Gillet Brigitte, Arbones Mariona, Delabar Jean M

机构信息

Functional and Adaptive Biology, Université Paris Diderot-Paris7 and CNRS, Paris, France.

出版信息

PLoS One. 2009;4(2):e4606. doi: 10.1371/journal.pone.0004606. Epub 2009 Feb 26.

Abstract

Individuals with partial HSA21 trisomies and mice with partial MMU16 trisomies containing an extra copy of the DYRK1A gene present various alterations in brain morphogenesis. They present also learning impairments modeling those encountered in Down syndrome. Previous MRI and histological analyses of a transgenic mice generated using a human YAC construct that contains five genes including DYRK1A reveal that DYRK1A is involved, during development, in the control of brain volume and cell density of specific brain regions. Gene dosage correction induces a rescue of the brain volume alterations. DYRK1A is also involved in the control of synaptic plasticity and memory consolidation. Increased gene dosage results in brain morphogenesis defects, low BDNF levels and mnemonic deficits in these mice. Epigallocatechin gallate (EGCG) - a member of a natural polyphenols family, found in great amount in green tea leaves - is a specific and safe DYRK1A inhibitor. We maintained control and transgenic mice overexpressing DYRK1A on two different polyphenol-based diets, from gestation to adulthood. The major features of the transgenic phenotype were rescued in these mice.

摘要

携带部分21号人类染色体三体的个体以及携带部分16号小鼠染色体三体且额外含有DYRK1A基因拷贝的小鼠,在脑形态发生过程中呈现出各种改变。它们还表现出类似唐氏综合征患者的学习障碍。先前对使用包含包括DYRK1A在内的五个基因的人类酵母人工染色体构建体产生的转基因小鼠进行的MRI和组织学分析表明,DYRK1A在发育过程中参与特定脑区脑容量和细胞密度的控制。基因剂量校正可挽救脑容量改变。DYRK1A还参与突触可塑性和记忆巩固的控制。基因剂量增加导致这些小鼠出现脑形态发生缺陷、脑源性神经营养因子(BDNF)水平降低和记忆缺陷。表没食子儿茶素没食子酸酯(EGCG)——天然多酚家族的一员,在绿茶中大量存在——是一种特异性且安全的DYRK1A抑制剂。我们从妊娠期到成年期,将对照小鼠和过度表达DYRK1A的转基因小鼠饲养在两种不同的基于多酚的饮食上。这些小鼠中转基因表型的主要特征得到了挽救。

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