The function of bioenergetic membranes is strongly influenced by the spatial arrangement of their constituent membrane proteins. Atomic force microscopy (AFM) can be used to probe protein organization at high resolution, allowing individual proteins to be identified. However, previous AFM studies of biological membranes have typically required that curved membranes are ruptured and flattened during sample preparation, with the possibility of disruption of the native protein arrangement or loss of proteins. Imaging native, curved membranes requires minimal tip–sample interaction in both lateral and vertical directions. Here, long-range tip–sample interactions are reduced by optimizing the imaging buffer. Tapping mode AFM with high-resonance-...
To understand how membrane proteins function requires characterizing their structure, assembly, and ...
In the life sciences, it has long been a dream to view the nanometer-scale dynamic behavior of indiv...
The behaviour of biological components in cellular membranes is vital to the function of cells howev...
AbstractThe atomic force microscope has developed into a powerful tool in structural biology allowin...
The main goal of this thesis was to investigate the supramolecular architecture of a photosynthetic ...
Fundamental biological processes such as cell-cell communication, signal transduction, molecular tra...
Proceedings of the NATO Advanced Research Workshop: Scanning Probe Microscopies and Molecular Mater...
The atomic force microscope acquires topographs of single native membrane proteins at subnanometer r...
International audiencePhotosynthetic processes, including light capture, electron transfer, and ener...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
The thylakoid membrane system is a complex membrane system that organizes and reorganizes itself to ...
Here we discuss the experimental approaches that have allowed high resolution atomic force microscop...
International audienceAtomic force microscopy (AFM) has developed into a powerful tool to investigat...
Atomic force microscopy (AFM) proved to be able to obtain high‐resolution three‐dimensional images o...
There is a need in biochemical research for new tools that can image and manipulate biomolecular and...
To understand how membrane proteins function requires characterizing their structure, assembly, and ...
In the life sciences, it has long been a dream to view the nanometer-scale dynamic behavior of indiv...
The behaviour of biological components in cellular membranes is vital to the function of cells howev...
AbstractThe atomic force microscope has developed into a powerful tool in structural biology allowin...
The main goal of this thesis was to investigate the supramolecular architecture of a photosynthetic ...
Fundamental biological processes such as cell-cell communication, signal transduction, molecular tra...
Proceedings of the NATO Advanced Research Workshop: Scanning Probe Microscopies and Molecular Mater...
The atomic force microscope acquires topographs of single native membrane proteins at subnanometer r...
International audiencePhotosynthetic processes, including light capture, electron transfer, and ener...
The Atomic Force Microscope (AFM) is a 20 years old instrument that has proven valuable for the ultr...
The thylakoid membrane system is a complex membrane system that organizes and reorganizes itself to ...
Here we discuss the experimental approaches that have allowed high resolution atomic force microscop...
International audienceAtomic force microscopy (AFM) has developed into a powerful tool to investigat...
Atomic force microscopy (AFM) proved to be able to obtain high‐resolution three‐dimensional images o...
There is a need in biochemical research for new tools that can image and manipulate biomolecular and...
To understand how membrane proteins function requires characterizing their structure, assembly, and ...
In the life sciences, it has long been a dream to view the nanometer-scale dynamic behavior of indiv...
The behaviour of biological components in cellular membranes is vital to the function of cells howev...