Mechanism of sensor kinase CitA transmembrane signaling

X Xizhou Cecily Zhang K Kai Xue M Michele Salvi B Benjamin Schomburg J Jonas Mehrens K Karin Giller (Department of NMR-based Structural Biology) M Marius Stopp S Siegfried Weisenburger D Daniel Böning V Vahid Sandoghdar (Max Planck Institute for the Science of Light, Erlangen, Germany.) G Gottfried Unden S Stefan Becker (Department of NMR-based Structural Biology) L Loren B. Andreas (Department of NMR-based Structural Biology) C Christian Griesinger (Department of NMR-based Structural Biology)

Abstract

Abstract Membrane bound histidine kinases (HKs) are ubiquitous sensors of extracellular stimuli in bacteria. However, a uniform structural model is still missing for their transmembrane signaling mechanism. Here, we used solid-state NMR in conjunction with crystallography, solution NMR and distance measurements to investigate the transmembrane signaling mechanism of a paradigmatic citrate sensing membrane embedded HK, CitA. Citrate binding in the sensory extracytoplasmic PAS domain (PASp) causes the linker to transmembrane helix 2 (TM2) to adopt a helical conformation. This triggers a piston-like pulling of TM2 and a quaternary structure rearrangement in the cytosolic PAS domain (PASc). Crystal structures of PASc reveal both anti-parallel and parallel dimer conformations. An anti-parallel to parallel transition upon citrate binding agrees with interdimer distances measured in the lipid embedded protein using a site-specific 19 F label in PASc. These data show how Angstrom scale structural changes in the sensor domain are transmitted across the membrane to be converted and amplified into a nm scale shift in the linker to the phosphorylation subdomain of the kinase.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 22, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (14)

X

Xizhou Cecily Zhang

K

Kai Xue

M

Michele Salvi

B

Benjamin Schomburg

J

Jonas Mehrens

K

Karin Giller

Department of NMR-based Structural Biology

M

Marius Stopp

S

Siegfried Weisenburger

D

Daniel Böning

V

Vahid Sandoghdar

Max Planck Institute for the Science of Light, Erlangen, Germany.

G

Gottfried Unden

S

Stefan Becker

Department of NMR-based Structural Biology

L

Loren B. Andreas

Department of NMR-based Structural Biology

C

Christian Griesinger

Department of NMR-based Structural Biology