HS-AFM Applications to Study Membrane Proteins.

TitleHS-AFM Applications to Study Membrane Proteins.
Publication TypeJournal Article
Year of Publication2026
AuthorsJiang Y, Mount J, Scheuring S
JournalMethods Mol Biol
Volume3020
Pagination115-133
Date Published2026
ISSN1940-6029
KeywordsLipid Bilayers, Membrane Proteins, Microscopy, Atomic Force, Protein Conformation
Abstract

High-speed atomic force microscopy (HS-AFM) has emerged as a powerful tool for the investigation of the dynamic behavior of membrane proteins in near-native environments. Unlike traditional structural techniques, HS-AFM allows for real-time imaging of individual protein molecules at nanometer resolution under physiological conditions. This capability enables direct visualization of conformational changes, intermolecular interactions, and functional cycles of membrane proteins, such as channels, transporters, and receptors, without the need for labeling or extensive sample preparation. HS-AFM provides insights into the structural plasticity and mechanistic pathways of membrane proteins that are often averaged out or missed by ensemble techniques. Its ability to capture dynamic events at sub-second timescales has significantly advanced our understanding of membrane protein conformational dynamics, single-molecule kinetics, as well as about diffusion, clustering, and interactions within lipid bilayers. As the technology continues to evolve, HS-AFM holds great promise for bridging structural and functional studies, offering a unique window into the real-time molecular mechanisms of membrane-associated biological processes. In this chapter, we detail protocols from membrane protein expression, purification, and reconstitution to final HS-AFM experiments.

DOI10.1007/978-1-0716-5186-5_8
Alternate JournalMethods Mol Biol
PubMed ID42681343
PubMed Central ID60077