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Focal DEPDC5 loss without disruption to cerebral cortical neuron migration recapitulates DEPDC5-related focal epilepsy
Karenna J. Groff, Yini Liang, Christopher Morici, Jinita B. Modasia, Leena Mehendale, Nishtha Gupta, Angelica D’Amore, Yongho Choe, Mustafa Q. Hameed, Alexander Rotenberg, Mustafa Sahin, Christopher J. Yuskaitis
Karenna J. Groff, Yini Liang, Christopher Morici, Jinita B. Modasia, Leena Mehendale, Nishtha Gupta, Angelica D’Amore, Yongho Choe, Mustafa Q. Hameed, Alexander Rotenberg, Mustafa Sahin, Christopher J. Yuskaitis
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Research Article Genetics Neuroscience

Focal DEPDC5 loss without disruption to cerebral cortical neuron migration recapitulates DEPDC5-related focal epilepsy

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Abstract

Focal cortical dysplasia (FCD) is a major cause of refractory epilepsy and is associated with pathogenic variants in mTOR pathway genes, including DEPDC5, the most common cause of familial focal epilepsy. The mechanisms of epileptogenesis associated with FCD and hyperactive mTOR signaling remain unclear in DEPDC5-related epilepsy. To test whether DEPDC5 loss leading to seizures requires in utero cortical developmental defects or whether postnatal neuronal dysfunction of mTORC1 is sufficient to drive seizures, we developed a postnatal focal cortical Depdc5-knockout mouse model. Postnatal day 0–1 Depdc5-floxed mice received unilateral motor cortex injections of either AAV-Cre-GFP or control AAV-GFP. The AAV-Cre-GFP–injected hemisphere had decreased DEPDC5 levels with hyperactivation of mTOR that increased with age compared with both the contralateral hemisphere and the AAV-GFP–injected mice. Cortical lamination was not disrupted by postnatal DEPDC5 loss. Pathologic hallmarks of FCDs were identified in the Depdc5-knockout hemisphere, including increased SMI-311 neurofilament staining, hypomyelination, astrogliosis, and microglial activation. Mice with postnatal cortical DEPDC5 loss exhibited lower seizure thresholds, increased focal seizures, and increased rates of seizure-induced death compared with control mice. This study demonstrates that postnatal DEPDC5 loss and subsequent mTOR hyperactivation without disruption of cortical migration is sufficient to cause epilepsy.

Authors

Karenna J. Groff, Yini Liang, Christopher Morici, Jinita B. Modasia, Leena Mehendale, Nishtha Gupta, Angelica D’Amore, Yongho Choe, Mustafa Q. Hameed, Alexander Rotenberg, Mustafa Sahin, Christopher J. Yuskaitis

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Figure 6

Focal Depdc5 loss in mice results in decreased seizure threshold, focal seizures, and seizure-induced death.

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Focal Depdc5 loss in mice results in decreased seizure threshold, focal ...
(A) After PTZ (65 mg/kg i.p. injection), there was a significant reduction in seizure susceptibility between focal Depdc5-knockout (AAV-Cre-GFP–injected) and control mice (AAV-GFP–injected) for both Depdc5-floxed genotypes (Depdc5c/– and Depdc5c/c). There was no difference in seizure susceptibility between Depdc5c/– mice and Depdc5c/c mice (Depdc5c/c: AAV-Cre-GFP n = 22, AAV-GFP n = 9; Depdc5c/c: AAV-Cre-GFP n = 20, AAV-GFP n = 13). Gehan-Breslow-Wilcoxon test. (B–D) Of the mice that seized after PTZ, a significantly greater proportion of focal Depdc5-knockout mice exhibit focal seizures contralateral to the injected hemisphere (B), multiple seizures during the 20-minute monitoring period (C), or seizure-induced death (D) compared with control mice. Fisher’s exact test. (E) Representative 2-channel EEG traces of PTZ-induced seizures at baseline, preictal, and ictal times, with consistent asymmetries between the 2 hemispheres (control vs. AAV-injected) in focal Depdc5-knockout mice as compared with control mice. (F) Single-channel EEG trace of the (i) beginning, (ii) evolution, and (iii) resolution (with postictal slowing) of a typical spontaneous convulsive seizure in a focal Depdc5-knockout mouse. (G) Cumulative spontaneous convulsive seizure burden in a focal Depdc5-knockout mouse across 1 week of continuous EEG recording (circles represent individual seizures with diameters indicating duration; gray bars indicate daily dark phase). (H) Average spontaneous convulsive seizure duration in a focal Depdc5-knockout mouse (whiskers represent SD). (I) Focal Depdc5 loss does not result in hyperactivity in mice. Total distance traveled and percentage clockwise turns is similar between focal Depdc5-knockout mice (n = 20) and control mice (n = 14) throughout the 15-minute open-field paradigm (Student’s t test). Graphs show mean ± SD. *P < 0.05; **P < 0.01; ***P < 0.001; ****P < 0.0001.

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