Skip to content
Open access

Structural Analysis of Membrane Proteins in Cell-Derived Microvesicles.

2026 · Methods in molecular biology · Vol 3020, pp. 185-225 · 0 citations
Medicine

Abstract

Transmembrane signalling by membrane proteins is essential for physiological processes and disease states, making these proteins key targets for drug development. Structural biology provides unique insights into the mechanisms of membrane protein function and dysfunction caused by mutations. Most high-resolution membrane protein structures have been obtained from purified proteins using single-particle cryo-electron microscopy (cryo-EM). However, protein purification and embedding into detergent micelles or membrane mimetics can partially destabilise the proteins, limit conformational flexibility, and disrupt native protein-protein interactions present in cellular membranes. Thus, investigating membrane proteins in their natural environment is essential. Recent advancements in hardware and software for cryo-EM and cryo-electron tomography (cryo-ET) make this increasingly feasible. Here, we describe protocols for structural analysis of membrane proteins in natively derived microvesicles by cryo-ET. We focus on preparing native vesicles containing a membrane protein of interest, cryo-ET data collection, and analysis using open-source software packages tomoBEAR, Dynamo, and RELION.

Read PDF

Similar papers

2026

Expression and Purification of Integral Membrane Enzymes for Functional and Structural Studies.

Together, the methods described here demonstrate that careful selection via thorough screening, and optimization of expression and purification conditions, are an invaluable investment of time, ultimately yielding the best target not only for successful high-resolution structural analyses-X-ray crystallography and cryo...

B. Kloss, C. Ardiccioni, V. Petrou et al. · 0 citations
2026

Expression, Purification, and Structural Characterization of Membrane Proteins: A Case Study of the ABC Transporter MsbA.

This chapter outlines a detailed workflow for the expression, purification, and structural analysis of the ABC transporter MsbA from Pseudomonas aeruginosa (PaMsbA), which exemplifies how biochemical optimization, native mass spectrometry, and cryo-electron microscopy (cryo-EM) can be integrated to investigate membrane...

Hanieh Bahramimoghaddam, Arthur Laganowsky · 0 citations
Open access Aug 2026

Probing peptide-mediated membrane pore formation by fluorescence, infrared spectroscopy, and atomic force microscopy

Membrane pores and channels play key roles in cell physiology. Hence, the elucidation of their structure is important for understanding their molecular mechanisms and for designing drugs to recover their impaired function during various pathologies. Atomic resolution structural techniques such as X-ray crystallography...

S. Tatulian, Munira Haque · 0 citations
Open access Sep 2026

Step-by-step maturation mechanism of the binary toxin pore revealed by cryo-EM analysis.

Membrane pore-forming proteins (PFPs) form ring-shaped membrane-translocating oligomers on membranes, contributing to infection, immunity, and cell death functions. Binary toxins produced by some bacteria consist of an enzymatic component that acts as a toxin and a membrane-binding component that forms a pore that deli...

Tomohito Yamada, Ren Nakanishi, Yukihiko Sugita et al. · 0 citations
#protein folding Sep 2026

High-Level Deuteration in Mammalian Cells for NMR Studies of Membrane Proteins

An isotope-labeling method using mammalian cells for high-sensitivity NMR studies of membrane proteins and their complexes and enables the NMR detection of the human membrane protein complex CD19-CD81, an essential co-receptor in B-cell activation, validating their stable interaction.

Taiga Yamamoto, Yutaka Kofuku, Yutaro Ogaeri et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.