Newton’s cradle-like allosteric mechanism explains regulatory RsmE RNA binding

E Esteban Finol F Fred F. Damberger (Department of Biology, Institute of Biochemistry) M Miroslav Krepl T Timo Flügel P Priscilla Dietrich T Thomas C. T. Michaels (Department of Biology, Institute of Biochemistry, ETH Zurich, Otto Stern Weg 3, 8093 Zurich, Switzerland) B Beat Vögeli J Jiří Šponer F Frédéric H-T. Allain

Abstract

Abstract In the bacterial Csr/Rsm system, non-coding RNAs activate mRNA translation by removing homodimeric Csr/Rsm proteins from ribosome-binding sites of mRNAs. In Pseudomonas protegens , each RsmZ ncRNA sequesters up to five RsmE dimers sequentially and specifically within a narrow affinity range, functioning as a ‘protein sponge’. Although the RsmE binding cascade is cooperative, binding of the highest affinity stem-loop RNA in RsmZ (SL2) reduces RNA binding affinity at the second site 10- to 30-fold. This unusual negative cooperativity may facilitate RsmE release from tightly bound mRNA for handover to the non-coding RNA, yet the underlying mechanisms remain unclear. Using Isothermal Titration Calorimetry, NMR spectroscopy and Molecular Dynamics, we reveal an allosteric mechanism resembling a Newton’s cradle, coupling the binding at one site to conformational and dynamic changes at the second site, explaining the reduced affinity of the second binding event, and handover of RsmE dimer from mRNA to the ncRNA RsmZ.

Article Details

Volume / Issue Vol. 17, Issue 1
Published April 22, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

E

Esteban Finol

F

Fred F. Damberger

Department of Biology, Institute of Biochemistry

M

Miroslav Krepl

T

Timo Flügel

P

Priscilla Dietrich

T

Thomas C. T. Michaels

Department of Biology, Institute of Biochemistry, ETH Zurich, Otto Stern Weg 3, 8093 Zurich, Switzerland

B

Beat Vögeli

J

Jiří Šponer

F

Frédéric H-T. Allain