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Activation mechanism and novel binding sites of the BK Ca channel activator CTIBD.

Authors :
Lee N
Kim S
Lee NY
Jo H
Jeong P
Pagire HS
Pagire SH
Ahn JH
Jin MS
Park CS
Source :
Life science alliance [Life Sci Alliance] 2024 Aug 01; Vol. 7 (10). Date of Electronic Publication: 2024 Aug 01 (Print Publication: 2024).
Publication Year :
2024

Abstract

The large-conductance calcium-activated potassium (BK <subscript>Ca</subscript> ) channel, which is crucial for urinary bladder smooth muscle relaxation, is a potential target for overactive bladder treatment. Our prior work unveiled CTIBD as a promising BK <subscript>Ca</subscript> channel activator, altering V <subscript> 1/2 </subscript> and G <subscript> max </subscript> This study investigates CTIBD's activation mechanism, revealing its independence from the Ca <superscript>2+</superscript> and membrane voltage sensing of the BK <subscript>Ca</subscript> channel. Cryo-electron microscopy disclosed that two CTIBD molecules bind to hydrophobic regions on the extracellular side of the lipid bilayer. Key residues (W22, W203, and F266) are important for CTIBD binding, and their replacement with alanine reduces CTIBD-mediated channel activation. The triple-mutant (W22A/W203A/F266A) channel showed the smallest V <subscript> 1/2 </subscript> shift with a minimal impact on activation and deactivation kinetics by CTIBD. At the single-channel level, CTIBD treatment was much less effective at increasing P <subscript> o </subscript> in the triple mutant, mainly because of a drastically increased dissociation rate compared with the WT. These findings highlight CTIBD's mechanism, offering crucial insights for developing small-molecule treatments for BK <subscript>Ca</subscript> -related pathophysiological conditions.<br /> (© 2024 Lee et al.)

Details

Language :
English
ISSN :
2575-1077
Volume :
7
Issue :
10
Database :
MEDLINE
Journal :
Life science alliance
Publication Type :
Academic Journal
Accession number :
39089879
Full Text :
https://doi.org/10.26508/lsa.202402621