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A KCNC1 Variant Linked to Rett Syndrome Disrupts ER to Golgi Trafficking of Kv3.1 Channel

Maureira, D.; Rubilar, C.; Lopez, J.; Santander, P.; Moldenhauer, H.; Silva, I.; Cruz, P.; Riquelme, D.; Baeza, J.; Gonzalez, W.; Orio, P.; Servili, E.; Troncoso, M.; Leiva-Salcedo, E.; Cerda, O.

2024-11-13 cell biology
10.1101/2024.11.12.623225 bioRxiv
Show abstract

Intrinsic neuronal excitability, defined by the balance between input and output signals, is crucial to neural function, and its disruption underlies various neurological diseases. Kv3.1 channels, encoded by KCNC1, are essential for high-frequency action potential firing. Variants in these channels are associated with several subtypes of epilepsy. We report a patient with developmental regression and epilepsy, meeting Rett syndrome criteria, who carries a KCNC1 variant encoding the S474C substitution in Kv3.1 (Kv3.1S474C). Electrophysiological and biochemical assays reveal that Kv3.1S474C reduces channel presence in the plasma membrane and is retained in the endoplasmic reticulum (ER). In murine primary cultures expressing Kv3.1S474C, we observed reduced neuronal firing frequency and exclusion of the channel from the axon initial segment (AIS). Consistently, we found a decreased firing frequency using a conductance-based computational neuronal model. In summary, this study identifies a novel link between a KCNC1 variant and Rett syndrome, highlighting the importance of S474 residue in Kv3.1 channel trafficking and function in neurons. SummaryThis study identifies and characterizes a novel KCNC1 variant associated with classical Rett syndrome. This variant disrupts endoplasmic reticulum (ER) to Golgi trafficking of the Kv3.1 channels, highlighting the variants potential role in altered neuronal excitability and neurodevelopmental disorders.

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