Witton J, Padmashri R, Zinyuk L E, Popov V I, Kraev I, Line S J, Jensen T P, Tedoldi A, Cummings D M, Tybulewicz V L J, Fisher E M C, Bannerman D M, Randall A D, Brown J T, Edwards F A, Rusakov D A, Stewart M G, Jones M W
School of Physiology & Pharmacology, University of Bristol, University Walk, Bristol BS8 1TD, UK.
Department of Clinical and Experimental Epilepsy, UCL Institute of Neurology, University College London, Queen Square, London WC1N 3BG, UK.
Nat Neurosci. 2015 Sep;18(9):1291-1298. doi: 10.1038/nn.4072. Epub 2015 Aug 3.
Hippocampal pathology is likely to contribute to cognitive disability in Down syndrome, yet the neural network basis of this pathology and its contributions to different facets of cognitive impairment remain unclear. Here we report dysfunctional connectivity between dentate gyrus and CA3 networks in the transchromosomic Tc1 mouse model of Down syndrome, demonstrating that ultrastructural abnormalities and impaired short-term plasticity at dentate gyrus-CA3 excitatory synapses culminate in impaired coding of new spatial information in CA3 and CA1 and disrupted behavior in vivo. These results highlight the vulnerability of dentate gyrus-CA3 networks to aberrant human chromosome 21 gene expression and delineate hippocampal circuit abnormalities likely to contribute to distinct cognitive phenotypes in Down syndrome.
海马体病变可能导致唐氏综合征患者出现认知障碍,然而这种病变的神经网络基础及其对认知障碍不同方面的影响仍不清楚。在此,我们报告了唐氏综合征的转染色体Tc1小鼠模型中齿状回与CA3网络之间的功能连接障碍,表明齿状回 - CA3兴奋性突触处的超微结构异常和短期可塑性受损,最终导致CA3和CA1中新空间信息编码受损以及体内行为紊乱。这些结果突出了齿状回 - CA3网络对异常人类21号染色体基因表达的易感性,并描绘了可能导致唐氏综合征中不同认知表型的海马体回路异常。