Complex water networks visualized by cryogenic electron microscopy of RNA

R Rachael C. Kretsch S Shanshan Li G Grigore Pintilie M Michael Z. Palo D David A. Case R Rhiju Das K Kaiming Zhang W Wah Chiu

Abstract

Abstract The stability and function of biomolecules are directly influenced by their myriad interactions with water1–16. Here we investigated water through cryogenic electron microscopy (cryo-EM) on a highly solvated molecule: the Tetrahymena ribozyme. By using segmentation-guided water and ion modelling (SWIM)17,18, an approach combining resolvability and chemical parameters, we automatically modelled and cross-validated water molecules and Mg2+ ions in the ribozyme core, revealing the extensive involvement of water in mediating RNA non-canonical interactions. Unexpectedly, in regions where SWIM does not model ordered water, we observed highly similar densities in both cryo-EM maps. In many of these regions, the cryo-EM densities superimpose with complex water networks predicted by molecular dynamics, supporting their assignment as water and suggesting a biophysical explanation for their elusiveness to conventional atomic coordinate modelling. Our study demonstrates an approach to unveil both rigid and flexible waters that surround biomolecules through cryo-EM map densities, statistical and chemical metrics, and molecular dynamics simulations.

Article Details

Journal Nature
Volume / Issue Vol. 642, Issue 8066
Published June 05, 2025
Pages 250-259
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (8)

R

Rachael C. Kretsch

S

Shanshan Li

G

Grigore Pintilie

M

Michael Z. Palo

D

David A. Case

R

Rhiju Das

K

Kaiming Zhang

W

Wah Chiu