4.7 Article

Retinal Dysfunction in a Mouse Model of HCN1 Genetic Epilepsy

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JOURNAL OF NEUROSCIENCE
卷 43, 期 12, 页码 2199-2209

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SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.1615-22.2022

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electroretinography; epilepsy; HCN1; photoreceptors; retina

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Pathogenic variants in HCN1 gene are associated with epilepsy syndromes. The Hcn1M294L mouse model shows seizure and behavioral phenotypes similar to patients. Mutated HCN1 channels in photoreceptors lead to reduced sensitivity to light and impaired processing of temporal information. This study highlights the importance of HCN1 channels in retinal function and the impact of HCN1 pathogenic variants on visual function.
Pathogenic variants in HCN1 are associated with a range of epilepsy syndromes including a developmental and epileptic encephalopathy. The recurrent de novo HCN1 pathogenic variant (M305L) results in a cation leak, allowing the flux of excitatory ions at potentials where the wild-type channels are closed. The Hcn1M294L mouse recapitulates patient seizure and behavioral phenotypes. As HCN1 channels are highly expressed in rod and cone photoreceptor inner segments, where they shape the light response, mutated channels are likely to impact visual function. Electroretinogram (ERG) recordings from male and female mice Hcn1M294Lmice revealed a significant decrease in the photoreceptor sensitivity to light, as well as attenuated bipolar cell (P2) and retinal ganglion cell responses. Hcn1M294L mice also showed attenuated ERG responses to flickering lights. ERG abnormalities are consistent with the response recorded from a single female human subject. There was no impact of the variant on the structure or expression of the Hcn1 protein in the retina. In silico modeling of photoreceptors revealed that the mutated HCN1 channel dramatically reduced light-induced hyperpolarization, resulting in more Ca21 flux during the response when compared with the wild-type situation. We propose that the light-induced change in glutamate release from photoreceptors during a stimulus will be diminished, significantly blunting the dynamic range of this response. Our data highlight the importance of HCN1 channels to retinal function and suggest that patients with HCN1 pathogenic variants are likely to have a dramatically reduced sensitivity to light and a limited ability to process temporal information.

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