Unsymmetric Triazine-Based Triglucoside Detergents for Membrane Protein Stability

Muhammad Ehsan, Lubna Ghani, Baoliang Lan, Satoshi Katsube, Ida H. Poulsen, Xiang Zhang, Muhammad Arslan, Bernadette Byrne, Claus J. Loland, Lan Guan, Xiangyu Liu, Pil Seok Chae*

*Corresponding author af dette arbejde

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

Abstract

Membrane proteins play a crucial role in a variety of biological processes and are key targets for pharmaceutical development. Structural studies of membrane proteins provide molecular insights into the mechanisms of these processes and are essential for effective drug discovery. Historically, these studies have relied on solubilization of the target protein using detergents, but conventional detergents often fail to maintain the stability of challenging membrane proteins. To address this issue, there is a need to develop novel detergents with enhanced protein stabilization properties. In this study, we synthesized unsymmetric variants of recently reported tris(hydroxymethyl)aminomethane(TRIS)-linker-bearing triazine-based triglucosides (TTGs) by incorporating two different alkyl chains (long and short) into the detergent structure. When tested with model membrane proteins, including a G protein-coupled receptor, TTG-8,12 demonstrated superior efficacy in stabilizing membrane proteins compared to the original TTGs and the gold standard detergents DDM/LMNG. These results suggest that detergent unsymmetry is an important concept for improving detergent performance and unsymmetric detergents such as TTG-8,12 hold significant potential for advancing membrane protein structural studies.

OriginalsprogEngelsk
Artikelnummere202400958
TidsskriftChemBioChem
Vol/bind26
Udgave nummer5
Antal sider8
ISSN1439-4227
DOI
StatusUdgivet - 2025

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