Mitochondrial Regulation of the Hippocampal Firing Rate Set Point and Seizure Susceptibility

线粒体对海马放电频率设定点和癫痫易感性的调节

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作者:Boaz Styr ,Nir Gonen ,Daniel Zarhin ,Antonella Ruggiero ,Refaela Atsmon ,Neta Gazit ,Gabriella Braun ,Samuel Frere ,Irena Vertkin ,Ilana Shapira ,Michal Harel ,Leore R Heim ,Maxim Katsenelson ,Ohad Rechnitz ,Saja Fadila ,Dori Derdikman ,Moran Rubinstein ,Tamar Geiger ,Eytan Ruppin ,Inna Slutsky

Abstract

Maintaining average activity within a set-point range constitutes a fundamental property of central neural circuits. However, whether and how activity set points are regulated remains unknown. Integrating genome-scale metabolic modeling and experimental study of neuronal homeostasis, we identified mitochondrial dihydroorotate dehydrogenase (DHODH) as a regulator of activity set points in hippocampal networks. The DHODH inhibitor teriflunomide stably suppressed mean firing rates via synaptic and intrinsic excitability mechanisms by modulating mitochondrial Ca2+ buffering and spare respiratory capacity. Bi-directional activity perturbations under DHODH blockade triggered firing rate compensation, while stabilizing firing to the lower level, indicating a change in the firing rate set point. In vivo, teriflunomide decreased CA3-CA1 synaptic transmission and CA1 mean firing rate and attenuated susceptibility to seizures, even in the intractable Dravet syndrome epilepsy model. Our results uncover mitochondria as a key regulator of activity set points, demonstrate the differential regulation of set points and compensatory mechanisms, and propose a new strategy to treat epilepsy. Keywords: Dravet syndrome; calcium; dihydroorotate dehydrogenase; epilepsy; firing rate; hippocampus; homeostasis; mitochondria; neuronal metabolism; set point.

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