To render membrane proteins amenable to in vitro functional and structural studies, they need to be extracted from cellular membranes and stabilised using membrane-mimetic systems. Amphiphilic copolymers gain considerable interest, because they are able to coextract membrane proteins and their surrounding lipids from complex cellular membranes to form polymer-bounded nanodiscs. The latter harbour a native-like lipid-bilayer core stabilised by a copolymer rim. Accordingly, these membrane mimics are supposed to provide superior stability to embedded membrane proteins as compared with conventional detergent micelles. Herein, the formation of nanodiscs by the most commonly used styrene/maleic acid (SMA)copolymer, termed SMA(2:1), was elucida...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
CITATION: Overduin, M. & Klumperman, B. 2019. Advancing membrane biology with poly(styrene-co-maleic...
Amphipathic copolymers have recently gained interest due to their ability to solubilize membrane pro...
Styrene-and-maleic acid copolymers (SMA) are gaining interest in membrane protein research due to th...
Amphipathic copolymers have recently gained interest due to their ability to solubilize membrane pro...
Styrene-and-maleic acid copolymers (SMA) are gaining interest in membrane protein research due to th...
Cell membranes separate the inside and outside of cells. Membrane proteins in the cell membrane cont...
Cell membranes separate the inside and outside of cells. Membrane proteins in the cell membrane cont...
Nanoparticles assembled with poly(styrene-maleic acid) copolymers, identified in the literature as L...
Membrane proteins are essential molecules that are involved in numerous processes such as signal tra...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
Membrane proteins are essential molecules that are involved in numerous processes such as signal tra...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
CITATION: Overduin, M. & Klumperman, B. 2019. Advancing membrane biology with poly(styrene-co-maleic...
Amphipathic copolymers have recently gained interest due to their ability to solubilize membrane pro...
Styrene-and-maleic acid copolymers (SMA) are gaining interest in membrane protein research due to th...
Amphipathic copolymers have recently gained interest due to their ability to solubilize membrane pro...
Styrene-and-maleic acid copolymers (SMA) are gaining interest in membrane protein research due to th...
Cell membranes separate the inside and outside of cells. Membrane proteins in the cell membrane cont...
Cell membranes separate the inside and outside of cells. Membrane proteins in the cell membrane cont...
Nanoparticles assembled with poly(styrene-maleic acid) copolymers, identified in the literature as L...
Membrane proteins are essential molecules that are involved in numerous processes such as signal tra...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
Membrane proteins are essential molecules that are involved in numerous processes such as signal tra...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
Amphipathic copolymers such as poly(styrene-maleic acid) (SMA) are promising tools for the facile ex...
CITATION: Overduin, M. & Klumperman, B. 2019. Advancing membrane biology with poly(styrene-co-maleic...