Disrupted in Schizophrenia 1 reverse ectopic migration of neural precursors in mouse hilus after pilocarpine-induced status epilepticus

Author:

Chen Lu1,Xu Jing1,Zhu Lin1,Xu Puying2,Chang Lvhua1,Han Yanbing1,Wu Qian1ORCID

Affiliation:

1. Kunming Medical University First Affilliated Hospital

2. Northeast Yunnan Hospital

Abstract

AbstractNeural precursors in the subgranular zone (SGZ) can be stimulated by status epilepticus (SE) and ectopically migrate to the hilus. These mislocated cells serve as "potential pacemakers" of spontaneous recurrent seizures, and targeting them could potentially reverse the seizure process. Disrupted-in-Schizophrenia 1 (DISC1) regulates hippocampal neurogenesis after seizures bothin vitroandin vivo. Our previous study found that DISC1 was colocalized with neural precursors in the hilus after SE. However, its molecular mechanism and pathways contribute to the ectopic migration of neural precursors to the hilus induced by SE awaits exploration. Here, we showed that both Reelin-ApoER2/EphB2 and Reelin-Integrin β1/Integrin α5 axes may participate in the modulation of neurogenesis after SE. Especially, DISC1, as a protective role, partly reversed the ectopic progenitor migration via EphB2 pathway. Our findings demonstrated that DISC1 played a protective role in the ectopic migration of neural precursors induced by SE insults and DISC1 could be an attractive new target for the treatment of epilepsy.

Publisher

Research Square Platform LLC

Reference49 articles.

1. The Epidemiology of Epilepsy;Beghi E;Neuroepidemiology,2020

2. Cadherins and the pathogenesis of epilepsy;Yang C;Cell Biochem Funct,2022

3. Epilepsy and Adult Neurogenesis;Jessberger S,2015

4. Integration of adult generated neurons during epileptogenesis;Zhao CS;Epilepsia,2008

5. Accumulation of abnormal adult-generated hippocampal granule cells predicts seizure frequency and severity;Hester MS;J Neurosci,2013

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