AbstractThe high homology of its axonemal components with humans and a large repertoire of axonemal mutants make Chlamydomonas a useful model system for experiments on the structure and function of eukaryotic cilia and flagella. Using this organism, we explored the spatial arrangement of axonemal components under physiological conditions by small-angle x-ray fiber diffraction. Axonemes were oriented in physiological solution by continuous shear flow and exposed to intense and stable x rays generated in the synchrotron radiation facility SPring-8, BL45XU. We compared diffraction patterns from axonemes isolated from wild-type and mutant strains lacking the whole outer arm (oda1), radial spoke (pf14), central apparatus (pf18), or the α-chain o...
AbstractThe beating of cilia and flagella is based on the localized sliding between adjacent outer d...
© 2018 The Author(s). Here we present a new approach to diffraction imaging of amyloid fibrils, comb...
A major goal for X-ray free-electron laser (XFEL) based science is to elucidate structures of biolog...
AbstractThe high homology of its axonemal components with humans and a large repertoire of axonemal ...
The axoneme, which forms the core of eukaryotic flagella and cilia, is one of the largest macromolec...
Coordinated sliding of microtubule doublets, driven by dynein motors, produces periodic beating of t...
AbstractThe 9+2 configuration of axonemes is one of the most conserved structures of eukaryotic orga...
In the past decade, investigations from several different fields have revealed the critical role of ...
X-ray free electron lasers (XFELs) create new possibilities for structural studies of biological obj...
Flagellar dyneins are the molecular motors responsible for producing the propagating bending motions...
The fine structure, protein composition, and roles in flagellar movement of specific axonemal compon...
Analysis of serial cross-sections of the Chlamydomonas flagellum reveals several structural asymmetr...
Analysis of serial cross-sections of the Chlamydomonas flagellum reveals several structural asymmetr...
Cilia and flagella are long, slender organelles found in many eukaryotic cells, where they have sens...
The mutation uni-1 gives rise to uniflagellate Chlamydomonas cells which rotate around a fixed point...
AbstractThe beating of cilia and flagella is based on the localized sliding between adjacent outer d...
© 2018 The Author(s). Here we present a new approach to diffraction imaging of amyloid fibrils, comb...
A major goal for X-ray free-electron laser (XFEL) based science is to elucidate structures of biolog...
AbstractThe high homology of its axonemal components with humans and a large repertoire of axonemal ...
The axoneme, which forms the core of eukaryotic flagella and cilia, is one of the largest macromolec...
Coordinated sliding of microtubule doublets, driven by dynein motors, produces periodic beating of t...
AbstractThe 9+2 configuration of axonemes is one of the most conserved structures of eukaryotic orga...
In the past decade, investigations from several different fields have revealed the critical role of ...
X-ray free electron lasers (XFELs) create new possibilities for structural studies of biological obj...
Flagellar dyneins are the molecular motors responsible for producing the propagating bending motions...
The fine structure, protein composition, and roles in flagellar movement of specific axonemal compon...
Analysis of serial cross-sections of the Chlamydomonas flagellum reveals several structural asymmetr...
Analysis of serial cross-sections of the Chlamydomonas flagellum reveals several structural asymmetr...
Cilia and flagella are long, slender organelles found in many eukaryotic cells, where they have sens...
The mutation uni-1 gives rise to uniflagellate Chlamydomonas cells which rotate around a fixed point...
AbstractThe beating of cilia and flagella is based on the localized sliding between adjacent outer d...
© 2018 The Author(s). Here we present a new approach to diffraction imaging of amyloid fibrils, comb...
A major goal for X-ray free-electron laser (XFEL) based science is to elucidate structures of biolog...