Styrene-maleic acid (SMA) copolymers have attracted interest in membrane research because they allow the solubilization and purification of membrane-spanning proteins from biological membranes in the form of native-like nanodisks. However, our understanding of the underlying SMA-lipid interactions is hampered by the fact that SMA preparations are very polydisperse. Here, we obtained fractions of the two most commonly used SMA preparations: SMA 2:1 and SMA 3:1 (both with specified Mw ∼10 kD), with different number-average molecular weight (Mn) and styrene content. The fractionation is based on the differential solubility of styrene-maleic anhydride (SMAnh) in hexane and acetone mixtures. SMAnh fractions were hydrolyzed to SMA and added to li...
Experimental characterization of membrane proteins often requires solubilization. A recent approach ...
Solubilisation of biological lipid bilayer membranes for analysis of their protein complement has tr...
Solubilisation of biological lipid bilayer membranes for analysis of their protein complement has tr...
Styrene-maleic acid (SMA) copolymers have attracted interest in membrane research because they allow...
Styrene-maleic acid (SMA) copolymers have attracted interest in membrane research because they allow...
Styrene-and-maleic acid copolymers (SMA) are gaining interest in membrane protein research due to th...
A promising tool in membrane research is the use of the styrene-maleic acid (SMA) copolymer to solub...
The styrene-maleic acid (SMA) copolymer is rapidly gaining attention as a tool in membrane research,...
The use of poly(styrene-co-maleic acid) (SMA) for the solubilization of lipid membranes and membrane...
A new and promising tool in membrane research is the detergent-free solubilization of membrane prote...
Amphipathic copolymers have recently gained interest due to their ability to solubilize membrane pro...
Challenges in purification and subsequent functionalization of membrane proteins often complicate th...
Cell membranes separate the inside and outside of cells. Membrane proteins in the cell membrane cont...
Experimental characterization of membrane proteins often requires solubilization. A recent approach ...
Solubilisation of biological lipid bilayer membranes for analysis of their protein complement has tr...
Solubilisation of biological lipid bilayer membranes for analysis of their protein complement has tr...
Styrene-maleic acid (SMA) copolymers have attracted interest in membrane research because they allow...
Styrene-maleic acid (SMA) copolymers have attracted interest in membrane research because they allow...
Styrene-and-maleic acid copolymers (SMA) are gaining interest in membrane protein research due to th...
A promising tool in membrane research is the use of the styrene-maleic acid (SMA) copolymer to solub...
The styrene-maleic acid (SMA) copolymer is rapidly gaining attention as a tool in membrane research,...
The use of poly(styrene-co-maleic acid) (SMA) for the solubilization of lipid membranes and membrane...
A new and promising tool in membrane research is the detergent-free solubilization of membrane prote...
Amphipathic copolymers have recently gained interest due to their ability to solubilize membrane pro...
Challenges in purification and subsequent functionalization of membrane proteins often complicate th...
Cell membranes separate the inside and outside of cells. Membrane proteins in the cell membrane cont...
Experimental characterization of membrane proteins often requires solubilization. A recent approach ...
Solubilisation of biological lipid bilayer membranes for analysis of their protein complement has tr...
Solubilisation of biological lipid bilayer membranes for analysis of their protein complement has tr...