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Cross-talk of filter gate and lower helices drives polymodal regulation and disease in TREK channels

Berke Türkaydin, Valerio Rizzi, Chaimae Benkerdagh, Simon Ghysbrecht, Simone Aureli, Thomas Baukrowitz, Marcus Schewe, Francesco Luigi Gervasio, Han Sun

Revista con revisión por pares

En palabras de los autores

Abstract The TREK two-pore domain potassium channels regulate membrane excitability and respond to diverse physiological stimuli. Single-site mutations of TREK are associated with neurodevelopmental disorders and can cause pathological channel hyperactivation. Here, using the OneOPES enhanced-sampling molecular dynamics framework, we characterize the energetics of conformational transition along a predefined pathway connecting the up and down states of TREK-2, together with initial conformational rearrangements of the selectivity filter under physiological stimuli and disease-mimicking conditions. The simulations reveal a shared energetic axis coupling the lower helices, proximal C-terminus, and selectivity filter to govern channel gating. Predicted conformational effects of a disease-mimicking mutation were validated electrophysiologically using a conformation-sensitive TREK-2 inhibitor. Together with our previous unbiased MD simulations, these results establish an energetic framework for TREK-2 regulation and dysfunction, complementing prior structural and mechanistic studies while highlighting the potential and methodological challenges of advanced enhanced-sampling approaches for resolving complex conformational landscapes of ion channels.

Resultado principalLimitación que admiten los autores

Apareció: jueves, 24 de septiembre. Nature Communications. Revista con revisión por pares.

DOI: 10.1038/s41467-026-77935-w