Molecular simulations meet personalized medicine: The mechanism of action of CLC-5 antiporter and the origin of Dent's disease

Publication date

2026-01-08T09:58:53Z

2026-01-08T09:58:53Z

2025-11-01

2026-01-07T16:07:23Z

Abstract

ClC-5 is a Cl-/H+ antiporter crucial for the homeostasis of the entire organism, and whose functional deficiencies cause pathologies such as Dent's disease, a rare genetic disorder that can have lethal consequences. While the clinical aspects of the pathology are known, its molecular basis is elusive, which hampers the development of potential therapies. We present here a systematic study, where we explore the mechanism of transport of ClC-5, deciphering the choreography of structural changes required for the transport of chloride ions and protons in opposing directions. Once the mechanism is determined, we explore how the 523 Delta Val deletion linked to Dent's disease hampers the correct functioning of the transporter, despite having a very minor structural impact. Our study highlights how state-of-the-art simulation methods can shed light on the origin of rare diseases and explore targets for personalized medicine.

Document Type

Article


Published version

Language

English

Related items

Reproducció del document publicat a: https://doi.org/10.1093/pnasnexus/pgaf353

PNAS Nexus, 2025, vol. 4, num. 11, pgaf353

https://doi.org/10.1093/pnasnexus/pgaf353

Recommended citation

This citation was generated automatically.

Rights

cc-by (c) Macaluso, Veronica et al., 2025

https://creativecommons.org/licenses/by/4.0/