Identification of gene regulatory networks affected across drug-resistant epilepsies

Publication date

2024-12

Authors

François, Liesbeth
Romagnolo, Alessia
Luinenburg, Mark J
Anink, Jasper J
Godard, Patrice
Rajman, Marek
van Eyll, Jonathan
Mühlebner, AngelikaORCID 0000-0001-9102-7353
Skelton, Andrew
Mills, James D

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Supervisors

Document Type

Article

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Abstract

Epilepsy is a chronic and heterogenous disease characterized by recurrent unprovoked seizures, that are commonly resistant to antiseizure medications. This study applies a transcriptome network-based approach across epilepsies aiming to improve understanding of molecular disease pathobiology, recognize affected biological mechanisms and apply causal reasoning to identify therapeutic hypotheses. This study included the most common drug-resistant epilepsies (DREs), such as temporal lobe epilepsy with hippocampal sclerosis (TLE-HS), and mTOR pathway-related malformations of cortical development (mTORopathies). This systematic comparison characterized the global molecular signature of epilepsies, elucidating the key underlying mechanisms of disease pathology including neurotransmission and synaptic plasticity, brain extracellular matrix and energy metabolism. In addition, specific dysregulations in neuroinflammation and oligodendrocyte function were observed in TLE-HS and mTORopathies, respectively. The aforementioned mechanisms are proposed as molecular hallmarks of DRE with the identified upstream regulators offering opportunities for drug-target discovery and development.

Keywords

Drug Resistant Epilepsy/drug therapy, Epilepsy, Temporal Lobe/drug therapy, Gene Regulatory Networks, Hippocampus/metabolism, Humans, Seizures/metabolism, General Chemistry, General Biochemistry,Genetics and Molecular Biology, General Physics and Astronomy, Journal Article

Citation

François, L, Romagnolo, A, Luinenburg, M J, Anink, J J, Godard, P, Rajman, M, van Eyll, J, Mühlebner, A, Skelton, A, Mills, J D, Dedeurwaerdere, S & Aronica, E 2024, 'Identification of gene regulatory networks affected across drug-resistant epilepsies', Nature Communications, vol. 15, no. 1, 2180. https://doi.org/10.1038/s41467-024-46592-2