Membrane proteins act as a central interface between the extracellular environment and the intracellular response and as such represent one of the most important classes of drug targets. The characterization of the molecular properties of integral membrane proteins, such as topology and interdomain interaction, is key to a fundamental understanding of their function. Atomic force microscopy (AFM) and force spectroscopy have the intrinsic capabilities of investigating these properties in a near-native setting. However, atomic force spectroscopy of membrane proteins is traditionally carried out in a crystalline setup. Alternatively, model membrane systems, such as tethered bilayer membranes, have been developed for surface-dependent technique...
The study of the biological membrane has largely benefitted from the exploitation of model bilayer ...
Membrane proteins are crucial in cell physiological activities and are the targets for most drugs. T...
The membrane protein bacteriorhodopsin was imaged in buffer solution at room temperature with the at...
Membrane proteins act as a central interface between the extracellular environment and the intracell...
To understand how membrane proteins function requires characterizing their structure, assembly, and ...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
Biological membranes are highly complex molecular systems, with a backbone that consist of a variety...
Biological membranes are highly complex molecular systems, with a backbone that consist of a variety...
Fundamental biological processes such as cell-cell communication, signal transduction, molecular tra...
Single-molecule force spectroscopy (SMFS) uses the cantilever tip of an atomic force microscopy (AFM...
AbstractAtomic force microscopy (AFM) allows the observation of surface structures of purple membran...
SummarySelecting an individual membrane protein and probing its mechanical properties has become pos...
Membrane proteins are crucial in cell physiological activities and are the targets for most drugs. T...
The study of the biological membrane has largely benefitted from the exploitation of model bilayer ...
Membrane proteins are crucial in cell physiological activities and are the targets for most drugs. T...
The membrane protein bacteriorhodopsin was imaged in buffer solution at room temperature with the at...
Membrane proteins act as a central interface between the extracellular environment and the intracell...
To understand how membrane proteins function requires characterizing their structure, assembly, and ...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
Biological membranes are highly complex molecular systems, with a backbone that consist of a variety...
Biological membranes are highly complex molecular systems, with a backbone that consist of a variety...
Fundamental biological processes such as cell-cell communication, signal transduction, molecular tra...
Single-molecule force spectroscopy (SMFS) uses the cantilever tip of an atomic force microscopy (AFM...
AbstractAtomic force microscopy (AFM) allows the observation of surface structures of purple membran...
SummarySelecting an individual membrane protein and probing its mechanical properties has become pos...
Membrane proteins are crucial in cell physiological activities and are the targets for most drugs. T...
The study of the biological membrane has largely benefitted from the exploitation of model bilayer ...
Membrane proteins are crucial in cell physiological activities and are the targets for most drugs. T...
The membrane protein bacteriorhodopsin was imaged in buffer solution at room temperature with the at...