Skip to main content
U.S. flag

An official website of the United States government

Official websites use .gov
A .gov website belongs to an official government organization in the United States.

Secure .gov websites use HTTPS
A lock ( ) or https:// means you’ve safely connected to the .gov website. Share sensitive information only on official, secure websites.

Nanodiscs formation process studied by contrast variation-SANS

Published

Author(s)

Lea Poskin, Lionel Porcar, Sylvain Prevost, Ryan Murphy, Catherine Michaux, Anne Martel

Abstract

Membrane proteins are essential for cellular communication and are frequently key targets for pharmaceutical intervention. However, their structural and dynamical characterization remains limited due to challenges associated with protein production and in situ analysis. Recent advances in cryo-electron microscopy have improved access to high-resolution membrane protein structures, yet the complex interplay between membrane proteins and lipids in their native environment remains insufficiently understood. Nanodiscs provide a highly effective platform for studying membrane proteins in a physiologically relevant environment and, with the recent development of "stealth nanodiscs," have become particularly promising for structural investigations using SANS. Here, by combining nanodiscs with contrast variation, we present a case study that characterizes the formation and structure of a protein-scaffold nanodisc through the joint analysis of small-angle neutron and X- ray scattering (SANS and SAXS). By enabling in situ investigations of protein–lipid interactions, these nanodiscs constitute a powerful tool for advancing our understanding of membrane protein structure and dynamics.
Citation
BBA - Biomembranes
Issue
1868

Keywords

SANS, SAXS, nanodiscs, membrane proteins

Citation

Poskin, L. , Porcar, L. , Prevost, S. , Murphy, R. , Michaux, C. and Martel, A. (2026), Nanodiscs formation process studied by contrast variation-SANS, BBA - Biomembranes, [online], https://dx.doi.org/10.1016/j.bbamem.2026.184511 (Accessed September 24, 2026)
Additional citation formats

Issues

If you have any questions about this publication or are having problems accessing it, please contact [email protected].

Created February 26, 2026, Updated September 22, 2026
Was this page helpful?