In this work, the effects of the two anions Cl– and NO3– on the phase behavior of bovine serum albumin (BSA) in solution with trivalent salts are compared systematically. In the presence of trivalent metal salts, negatively charged proteins such as BSA in solution undergo a reentrant condensation (RC) phase behavior, which has been established for several proteins with chlorides of trivalent salts. Here, we show that replacing Cl– by NO3– leads to a marked change in the phase behavior. The effect is investigated for the two different cations Y3+ and La3+. The salts are thus YCl3, Y(NO3)3, LaCl3, and La(NO3)3. The experimental phase behavior shows that while the chloride salts induce both liquid–liquid phase separation (LLPS) and RC, the n...
Proteins are crucial and substantial for life. Their functions range from transporting molecules, b...
Using bovine β-lactoglobulin as a model system, we have studied the crystallization pathways in the ...
Protein aggregation via liquid–liquid phase separation (LLPS) is ubiquitous in nature and is intimat...
In this work, the effects of the two anions Cl– and NO3– on the phase behavior of bovine serum album...
In the presence of trivalent cations, negatively charged globular proteins show a rich phase behavio...
Protein phase behaviour is of importance in various areas of research such as structural biology, ra...
The ability of polyvalent anions to influence protein–protein interactions and protein net charge wa...
The effective interactions and phase behavior of protein solutions under strong electrostatic coupli...
Liquid-liquid phase separation (LLPS) in protein systems is relevant for many phenomena, from protei...
Tuning of protein surface charge is a fundamental mechanism in biological systems. Protein charge is...
We present an experimental study combined with a theoretical discussion of the effective interaction...
The evolution of interactions in the bovine serum albumin (BSA) protein solution on addition of mono...
Liquid–liquid phase separation (LLPS) in protein systems is relevant for many phenomena, from protei...
Liquid-liquid phase separations of aqueous ovalbumin and bovine serum albumin (BSA) solutions are re...
Liquid–liquid phase separation (LLPS) in protein systems is relevant for many phenomena, from protei...
Proteins are crucial and substantial for life. Their functions range from transporting molecules, b...
Using bovine β-lactoglobulin as a model system, we have studied the crystallization pathways in the ...
Protein aggregation via liquid–liquid phase separation (LLPS) is ubiquitous in nature and is intimat...
In this work, the effects of the two anions Cl– and NO3– on the phase behavior of bovine serum album...
In the presence of trivalent cations, negatively charged globular proteins show a rich phase behavio...
Protein phase behaviour is of importance in various areas of research such as structural biology, ra...
The ability of polyvalent anions to influence protein–protein interactions and protein net charge wa...
The effective interactions and phase behavior of protein solutions under strong electrostatic coupli...
Liquid-liquid phase separation (LLPS) in protein systems is relevant for many phenomena, from protei...
Tuning of protein surface charge is a fundamental mechanism in biological systems. Protein charge is...
We present an experimental study combined with a theoretical discussion of the effective interaction...
The evolution of interactions in the bovine serum albumin (BSA) protein solution on addition of mono...
Liquid–liquid phase separation (LLPS) in protein systems is relevant for many phenomena, from protei...
Liquid-liquid phase separations of aqueous ovalbumin and bovine serum albumin (BSA) solutions are re...
Liquid–liquid phase separation (LLPS) in protein systems is relevant for many phenomena, from protei...
Proteins are crucial and substantial for life. Their functions range from transporting molecules, b...
Using bovine β-lactoglobulin as a model system, we have studied the crystallization pathways in the ...
Protein aggregation via liquid–liquid phase separation (LLPS) is ubiquitous in nature and is intimat...