A short intrinsically disordered region at KtrB’s N-terminus facilitates allosteric regulation of K+ channel KtrAB

J Janina Stautz D David Griwatz S Susann Kaltwasser A Ahmad Reza Mehdipour S Sophie Ketter C Celina Thiel D Dorith Wunnicke M Marina Schrecker D Deryck J. Mills G Gerhard Hummer (Department of Theoretical Biophysics) J Janet Vonck I Inga Hänelt

Abstract

Abstract K+ homeostasis is crucial for bacterial survival. The bacterial K+ channel KtrAB is regulated by the binding of ADP and ATP to the cytosolic RCK subunits KtrA. While the ligand-induced conformational changes in KtrA are well described, the transmission to the gating regions within KtrB is not understood. Here, we present a cryo-EM structure of the ADP-bound, inactive KtrAB complex from Vibrio alginolyticus, which resolves part of KtrB’s N termini. They are short intrinsically disordered regions (IDRs) located at the interface of KtrA and KtrB. We reveal that these IDRs play a decisive role in ATP-mediated channel opening, while the closed ADP-bound state does not depend on the N-termini. We propose an allosteric mechanism, in which ATP-induced conformational changes within KtrA trigger an interaction of KtrB’s N-terminal IDRs with the membrane, stabilizing the active and conductive state of KtrAB.

Article Details

Volume / Issue Vol. 16, Issue 1
Published May 07, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

J

Janina Stautz

D

David Griwatz

S

Susann Kaltwasser

A

Ahmad Reza Mehdipour

S

Sophie Ketter

C

Celina Thiel

D

Dorith Wunnicke

M

Marina Schrecker

D

Deryck J. Mills

G

Gerhard Hummer

Department of Theoretical Biophysics

J

Janet Vonck

I

Inga Hänelt