Ongoing progress in electron microscopy (EM) offers now an opening to visualize cells at the nanoscale by cryo-electron tomography (ET). Large protein complexes can be resolved at near-atomic resolution by single particle averaging. Some examples from mitochondria and chloroplasts illustrate the possibilities with an emphasis on the membrane organization. Cryo-ET performed on non-chemically fixed, unstained, ice-embedded material can visualize specific large membrane protein complexes. In combination with averaging methods, 3D structures were calculated of mitochondrial ATP synthase at 6 nm resolution and of chloroplast photosystem II at 3.5 nm
The long prevailing view of a cell as a membrane-bound reaction compartment filled with freely diffu...
Cryo electron tomography is a three-dimensional imaging technique that is suitable for imaging snaps...
Cryo-electron tomography was used to study the structural organization of whole frozen-hydrated mito...
Ongoing progress in electron microscopy (EM) offers now an opening to visualize cells at the nanosca...
Ongoing progress in electron microscopy (EM) offers now an opening to visualize cells at the nanosca...
Ongoing progress in electron microscopy (EM) offers now an opening to visualize cells at the nanosca...
AbstractOngoing progress in electron microscopy (EM) offers now an opening to visualize cells at the...
AbstractOngoing progress in electron microscopy (EM) offers now an opening to visualize cells at the...
Electron cryo-tomography is a powerful tool in structural biology, capable of visualizing the three-...
Electron cryo-tomography is a powerful tool in structural biology, capable of visualizing the three-...
For more than half a century, electron microscopy has been a main tool for investigating the complex...
For more than half a century, electron microscopy has been a main tool for investigating the complex...
For more than half a century, electron microscopy has been a main tool for investigating the complex...
The architecture of protein assemblies and their remodeling during physiological processes is fundam...
Electron cryo-tomography is a powerful tool in structural biology, capable of visualizing the three-...
The long prevailing view of a cell as a membrane-bound reaction compartment filled with freely diffu...
Cryo electron tomography is a three-dimensional imaging technique that is suitable for imaging snaps...
Cryo-electron tomography was used to study the structural organization of whole frozen-hydrated mito...
Ongoing progress in electron microscopy (EM) offers now an opening to visualize cells at the nanosca...
Ongoing progress in electron microscopy (EM) offers now an opening to visualize cells at the nanosca...
Ongoing progress in electron microscopy (EM) offers now an opening to visualize cells at the nanosca...
AbstractOngoing progress in electron microscopy (EM) offers now an opening to visualize cells at the...
AbstractOngoing progress in electron microscopy (EM) offers now an opening to visualize cells at the...
Electron cryo-tomography is a powerful tool in structural biology, capable of visualizing the three-...
Electron cryo-tomography is a powerful tool in structural biology, capable of visualizing the three-...
For more than half a century, electron microscopy has been a main tool for investigating the complex...
For more than half a century, electron microscopy has been a main tool for investigating the complex...
For more than half a century, electron microscopy has been a main tool for investigating the complex...
The architecture of protein assemblies and their remodeling during physiological processes is fundam...
Electron cryo-tomography is a powerful tool in structural biology, capable of visualizing the three-...
The long prevailing view of a cell as a membrane-bound reaction compartment filled with freely diffu...
Cryo electron tomography is a three-dimensional imaging technique that is suitable for imaging snaps...
Cryo-electron tomography was used to study the structural organization of whole frozen-hydrated mito...