Evans, Adam, Kelly, Bethan, Sridhar, Pooja, Rothnie, Alice J., Pollock, Naomi L., Ireland, Philip M., Roper, David I. and Dafforn, Tim R. (2026). RePol:A high‐throughput screen for optimizing membrane protein solubilization and purification using polymers. Protein Science, 35 (1),
Abstract
Extraction and purification of membrane proteins has for a long time represented a significant challenge. Polymer‐based extraction methods, like those using styrene maleic acid co‐polymers have provided a fertile approach to generate samples that include the local lipid environment surrounding the protein. However, the wide variety of different polymers now available provides a challenge to identify the optimal solution. In this study we develop and demonstrate a novel high‐throughput screening approach for rapid optimization of polymer solubilization agents and chromatography resins for membrane protein purification. Using this approach, we explore whether there are standard conditions that perform well for a range of membrane protein morphologies, sources and functions. These data show that no such standard conditions exist for either polymer solubilization agent or chromatography resin and that some combinations are rarely suitable for membrane protein purifications under these conditions, such as the use of TALON resin at a pH of 7.5 or SMALP300 in the Synthetic Nanodisc Screening Kit MINI kit. Instead, the use of the screening approach developed in this work is the best route to an optimal membrane protein preparation protocol.
| Publication DOI: | https://doi.org/10.1002/pro.70407 |
|---|---|
| Divisions: | College of Health & Life Sciences > School of Biosciences College of Health & Life Sciences College of Health & Life Sciences > School of Biosciences > Cellular and Molecular Biomedicine Aston University (General) |
| Funding Information: | The Aston Institute for Membrane Excellence (AIME) is funded by UKRI’s Research England as part of their Expanding Excellence in England (E3) fund. |
| Additional Information: | This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. © 2025 The Author(s). Protein Science published by Wiley Periodicals LLC on behalf of The Protein Society |
| Uncontrolled Keywords: | membrane protein,optimization,affinity resin,immobilized metal‐ion affinity chromatography,DIBMA,SMA,high‐throughput screen,synthetic polymer,protein purification optimization,Polystyrenes/chemistry,Solubility,Polymers/chemistry,Maleates/chemistry,High-Throughput Screening Assays/methods,Membrane Proteins/isolation & purification |
| Publication ISSN: | 1469-896X |
| Data Access Statement: | The data that support the findings of this study are available from the corresponding author upon reasonable request. |
| Last Modified: | 20 Jan 2026 16:28 |
| Date Deposited: | 13 Jan 2026 10:23 |
| Full Text Link: | |
| Related URLs: |
https://onlinel ... .1002/pro.70407
(Publisher URL) http://www.scop ... tnerID=8YFLogxK (Scopus URL) |
PURE Output Type: | Article |
| Published Date: | 2026-01-01 |
| Published Online Date: | 2025-12-22 |
| Accepted Date: | 2025-11-19 |
| Submitted Date: | 2025-03-06 |
| Authors: |
Evans, Adam
Kelly, Bethan Sridhar, Pooja Rothnie, Alice J. (
0000-0002-4259-7015)
Pollock, Naomi L. (
0000-0003-0345-0923)
Ireland, Philip M. Roper, David I. Dafforn, Tim R. |
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Version: Published Version
License: Creative Commons Attribution
Version: Published Version
License: Creative Commons Attribution
0000-0002-4259-7015