Ultra-intense femtosecond X-ray pulses from X-ray lasers permit structural studies on single particles and biomolecules without crystals. We present a large data set on inherently heterogeneous, polyhedral carboxysome particles. Carboxysomes are cell organelles that vary in size and facilitate up to 40% of Earth's carbon fixation by cyanobacteria and certain proteobacteria. Variation in size hinders crystallization. Carboxysomes appear icosahedral in the electron microscope. A protein shell encapsulates a large number of Rubisco molecules in paracrystalline arrays inside the organelle. We used carboxysomes with a mean diameter of 115±26 nm from Halothiobacillus neapolitanus. A new aerosol sample-injector allowed us to record 70,000 low-nois...
X-ray free electron lasers (XFELs) create new possibilities for structural studies of biological obj...
Diffractive imaging with free-electron lasers allows structure determination from ensembles of weakl...
There exists a conspicuous gap of knowledge about the organization of life at mesoscopic levels. Ult...
Ultra-intense femtosecond X-ray pulses from X-ray lasers permit structural studies on single particl...
Ultra-intense femtosecond X-ray pulses from X-ray lasers permit structural studies on single particl...
We overcome two of the most daunting challenges in single-particle diffractive imaging: collecting m...
We overcome two of the most daunting challenges in single-particle diffractive imaging: collecting m...
We overcome two of the most daunting challenges in single-particle diffractive imaging: collecting m...
Structural studies on living cells by conventional methods are limited to low resolution because rad...
Structural studies on living cells by conventional methods are limited to low resolution because rad...
There exists a conspicuous gap of knowledge about the organization of life at mesoscopic levels. Ult...
Theoretical studies and simulations predict that with a very short and very intense coherent X-ray p...
X-ray free electron lasers (XFELs) create new possibilities for structural studies of biological obj...
Diffractive imaging with free-electron lasers allows structure determination from ensembles of weakl...
There exists a conspicuous gap of knowledge about the organization of life at mesoscopic levels. Ult...
Ultra-intense femtosecond X-ray pulses from X-ray lasers permit structural studies on single particl...
Ultra-intense femtosecond X-ray pulses from X-ray lasers permit structural studies on single particl...
We overcome two of the most daunting challenges in single-particle diffractive imaging: collecting m...
We overcome two of the most daunting challenges in single-particle diffractive imaging: collecting m...
We overcome two of the most daunting challenges in single-particle diffractive imaging: collecting m...
Structural studies on living cells by conventional methods are limited to low resolution because rad...
Structural studies on living cells by conventional methods are limited to low resolution because rad...
There exists a conspicuous gap of knowledge about the organization of life at mesoscopic levels. Ult...
Theoretical studies and simulations predict that with a very short and very intense coherent X-ray p...
X-ray free electron lasers (XFELs) create new possibilities for structural studies of biological obj...
Diffractive imaging with free-electron lasers allows structure determination from ensembles of weakl...
There exists a conspicuous gap of knowledge about the organization of life at mesoscopic levels. Ult...