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January 10, 2026Biomedicine & Pharmacotherapy6 citationsOpen Access

Trikafta restores thermodynamic coupling between two nucleotide binding domains for potentiating CFTR activity

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GWGuangyu Wang

Key Result

Trikafta's VX-770 requires tight coupling between dimerized NBD1 and NBD2 to potentiate CFTR activity in F508del cystic fibrosis mutants.

Key Points

  • This research aims to understand how Trikafta modulates CFTR activity by analyzing nucleotide binding domain interactions.
  • Analyzed the thermodynamic structures and interactions of NBD1 and NBD2 with and without the F508del mutation.
  • Examined ligand and modulator binding effects on both nucleotide binding domains.
  • Used computational methods to assess dimerization and thermostability under specific conditions.
  • Established that comparable thermostability in dimerized NBD1 and NBD2 is essential for channel activity potentiation.
  • Showed that proper thermodynamic coupling is necessary for Trikafta to correct the gating defect in F508del.
  • Identified a mechanism for how Trikafta enhances CFTR function through induced fit at interdomain interfaces.

Structured PICO

P
Population
Computational model of human cystic fibrosis transmembrane conductance regulator (CFTR) with F508del mutation
I
Intervention
Trikafta modulators (VX-445, VX-809, VX-770)
C
Comparator
Counterparts of NBD1 with or without F508 in response to ligand and modulator binding
O
Outcome
Thermoring structures and interdomain interactions of NBD2surrogate

Tight coupling between dimerized NBD1 and NBD2 is required for Trikafta modulators to rescue the gating defect of the CFTR F508del mutant.

Abstract

Trikafta modulators can correct the folding, thermal and gating defects of the most common cystic fibrosis mutant F508del of the human cystic fibrosis transmembrane conductance regulator. While folding correctors VX-445 and VX-809 are sufficient to rescue its folding and thermal defects by restoring Mg/ATP mediated dimerization between the two nucleotide binding domains (NBD1 and NBD2), the thermodynamic basis for the precise activity potentiation by VX-770 in Trikafta remains unknown. In this computational study, the thermoring structures and interdomain interactions of NBD2 were examined and compared with the counterparts of NBD1 with or without F508 in response to ligand and modulator binding. The results demonstrated that comparable thermostability between dimerized NBD1 and NBD2 was required to stabilize an activated intermediate for the channel activity potentiation by VX-770. Thus, tight coupling between dimerized NBD1 and NBD2 upon a global induced fit across the interdomain interfaces is still required for Trikafta modulators to rescue the gating defect of the F508del mutant.

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Cite This Study

Guangyu Wang (2026) studied this question. Trikafta's VX-770 requires tight coupling between dimerized NBD1 and NBD2 to potentiate CFTR activity in F508del cystic fibrosis mutants.

synapsesocial.com/papers/696321f691e05aa366cb8476https://doi.org/10.1016/j.biopha.2025.118936
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