4.7 Article

Loss of CDKL5 in Glutamatergic Neurons Disrupts Hippocampal Microcircuitry and Leads to Memory Impairment in Mice

期刊

JOURNAL OF NEUROSCIENCE
卷 37, 期 31, 页码 7420-7437

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.0539-17.2017

关键词

CDKL5; circuit function; learning and memory; synaptic function

资金

  1. Loulou Foundation
  2. International Foundation for CDKL5 Research
  3. Intellectual and Developmental Disabilities Research Center (IDDRC) at CHOP/PENN [1U54HD086984, 4R01NS038572, 5T32MH017168, T32HD083185, T32GM007170, F30NS100433]
  4. Hearst Foundation Fellowship

向作者/读者索取更多资源

Cyclin-dependent kinase-like 5 (CDKL5) deficiency is a neurodevelopmental disorder characterized by epileptic seizures, severe intellectual disability, and autistic features. Mice lacking CDKL5 display multiple behavioral abnormalities reminiscent of the disorder, but the cellular origins of these phenotypes remain unclear. Here, we find that ablating CDKL5 expression specifically from forebrain glutamatergic neurons impairs hippocampal-dependent memory in male conditional knock-out mice. Hippocampal pyramidal neurons lacking CDKL5 show decreased dendritic complexity but a trend toward increased spine density. This morphological change is accompanied by an increase in the frequency of spontaneous miniature EPSCs and interestingly, miniature IPSCs. Using voltage-sensitive dye imaging to interrogate the evoked response of the CA1 microcircuit, we find that CA1 pyramidal neurons lacking CDKL5 show hyperexcitability in their dendritic domain that is constrained by elevated inhibition in a spatially and temporally distinct manner. These results suggest a novel role for CDKL5 in the regulation of synaptic function and uncover an intriguing microcircuit mechanism underlying impaired learning and memory.

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