Department of Biotechnology
inStem (Institute for Stem Cell Science and Regenerative Medicine)

Enhanced hippocampal LTP but normal NMDA receptor and AMPA receptor function in a rat model of CDKL5 deficiency disorder.

Publication Type

Journal Article

Date of Publication

June 14, 2024

Journal

Molecular autism

Volume/Issue

15/1

ISSN

2040-2392

Mutations in the X-linked gene cyclin-dependent kinase-like 5 (CDKL5) cause a severe neurological disorder characterised by early-onset epileptic seizures, autism and intellectual disability (ID). Impaired hippocampal function has been implicated in other models of monogenic forms of autism spectrum disorders and ID and is often linked to epilepsy and behavioural abnormalities. Many individuals with CDKL5 deficiency disorder (CDD) have null mutations and complete loss of CDKL5 protein, therefore in the current study we used a Cdkl5 rat model to elucidate the impact of CDKL5 loss on cellular excitability and synaptic function of CA1 pyramidal cells (PCs). We hypothesised abnormal pre and/or post synaptic function and plasticity would be observed in the hippocampus of Cdkl5 rats.

Alternate Journal

Mol Autism

PubMed ID

38877552

PubMed Central ID

PMC11177379

Authors

Laura Simões de Oliveira
Heather E O'Leary
Sarfaraz Nawaz
Rita Loureiro
Elizabeth C Davenport
Paul Baxter
Susana R Louros
Owen Dando
Emma Perkins
Julien Peltier
Matthias Trost
Emily K Osterweil
Giles E Hardingham
Michael A Cousin
Sumantra Chattarji
Sam A Booker
Tim A Benke
David J A Wyllie
Peter C Kind

Keywords

Long-Term Potentiation
Synapses
Animals
Receptors, AMPA
CA1 Region, Hippocampal
Male
Protein Serine-Threonine Kinases
Disease Models, Animal
Pyramidal Cells
Epileptic Syndromes
Excitatory Postsynaptic Potentials
Rats
Genetic Diseases, X-Linked
Receptors, N-Methyl-D-Aspartate
Spasms, Infantile
Hippocampus