AbstractWe report the effects of ligand presentation on the binding of aqueous proteins to solid supported lipid bilayers. Specifically, we show that the equilibrium dissociation constant can be strongly affected by ligand lipophilicity and linker length/structure. The apparent equilibrium dissociation constants (KD) were compared for two model systems, biotin/anti-biotin and 2,4-dinitrophenyl (DNP)/anti-DNP, in bulk solution and at model membrane surfaces. The binding constants in solution were obtained from fluorescence anisotropy measurements. The surface binding constants were determined by microfluidic techniques in conjunction with total internal reflection fluorescence microscopy. The results showed that the bulk solution equilibrium...
<p>This model contains two types of proteins (P<sub>1</sub> and P<sub>2</sub>) and one type of lipid...
The development of model systems that mimic biological interactions and allow the control of both re...
Ligand/receptor multivalent interactions have been exploited to drive self-assembly of nanoparticles...
Ligand-receptor interactions are ubiquitous on cell membranes. Indeed, many important physiological ...
The association of an anti-dinitrophenyl monoclonal antibody and its Fab fragment with supported pho...
Three model biomembrane systems, monolayers, micelles, and vesicles, have been used to study the inf...
Densely packed domains of membrane proteins are important structures in cellular processes that invo...
AbstractWe have studied the interaction between monoclonal anti-trinitrophenyl antibodies (IgGI and ...
The association of an anti-dinitrophenyl monoclonal antibody and its Fab fragment with supported pho...
The nonspecific binding of proteins to various biological and non-biological surfaces has limited th...
AbstractThus far, understanding how the confined cellular environment affects the lifetime of bonds,...
We studied specific membrane-membrane interactions mediated by ligand-receptor binding in a model sy...
Binding between protein molecules on contacting cells is essential in initiating and regulating seve...
AbstractMembrane targeting proteins are recruited to specific membranes during cell signaling events...
The development of model systems that mimic biological interactions and allow the control of both re...
<p>This model contains two types of proteins (P<sub>1</sub> and P<sub>2</sub>) and one type of lipid...
The development of model systems that mimic biological interactions and allow the control of both re...
Ligand/receptor multivalent interactions have been exploited to drive self-assembly of nanoparticles...
Ligand-receptor interactions are ubiquitous on cell membranes. Indeed, many important physiological ...
The association of an anti-dinitrophenyl monoclonal antibody and its Fab fragment with supported pho...
Three model biomembrane systems, monolayers, micelles, and vesicles, have been used to study the inf...
Densely packed domains of membrane proteins are important structures in cellular processes that invo...
AbstractWe have studied the interaction between monoclonal anti-trinitrophenyl antibodies (IgGI and ...
The association of an anti-dinitrophenyl monoclonal antibody and its Fab fragment with supported pho...
The nonspecific binding of proteins to various biological and non-biological surfaces has limited th...
AbstractThus far, understanding how the confined cellular environment affects the lifetime of bonds,...
We studied specific membrane-membrane interactions mediated by ligand-receptor binding in a model sy...
Binding between protein molecules on contacting cells is essential in initiating and regulating seve...
AbstractMembrane targeting proteins are recruited to specific membranes during cell signaling events...
The development of model systems that mimic biological interactions and allow the control of both re...
<p>This model contains two types of proteins (P<sub>1</sub> and P<sub>2</sub>) and one type of lipid...
The development of model systems that mimic biological interactions and allow the control of both re...
Ligand/receptor multivalent interactions have been exploited to drive self-assembly of nanoparticles...