SummaryMicrotubule doublet (MTD) is the main skeleton of cilia/flagella. Many proteins, such as dyneins and radial spokes, bind to MTD, and generate or regulate force. While the structure of the reconstituted microtubule has been solved at atomic resolution, nature of the axonemal MTD is still unclear. There are a few hypotheses of the lattice arrangement of its α- and β-tubulins, but it has not been described how dyneins and radial spokes bind to MTD. In this study, we analyzed the three-dimensional structure of Tetrahymena MTD at ∼19 Å resolution by single particle cryo-electron microscopy. To identify α- and β-tubulins, we combined image analysis of MTD with specific kinesin decoration. This work reveals that α- and β-tubulins form a B-l...
Cells use motile cilia to generate force in the extracellular space. The structure of a cilium can b...
Cilia are thin microtubule-based protrusions of eukaryotic cells. The swimming of ciliated protists ...
The outer dynein arms (ODAs) of the flagellar axoneme generate forces needed for flagellar beating. ...
SummaryMicrotubule doublet (MTD) is the main skeleton of cilia/flagella. Many proteins, such as dyne...
Doublet microtubules (DMTs) provide a scaffold for axoneme assembly in motile cilia. Aside from α/β ...
Doublet microtubules (DMTs) provide a scaffold for axoneme assembly in motile cilia. Aside from α/β ...
Cilia, the hair-like protrusions that beat at high frequencies to propel a cell or move fluid around...
The axoneme, which forms the core of eukaryotic flagella and cilia, is one of the largest macromolec...
Dynein-decorated doublet microtubules (DMTs) are critical components of the oscillatory molecular ma...
Although the overall structures of flagellar and cytoplasmic microtubules are understood, many detai...
AbstractBackground: The core of the eukaryotic flagellum is the axoneme, a complex motile organelle ...
Coordinated sliding of microtubule doublets, driven by dynein motors, produces periodic beating of t...
Microtubules are cytoskeletal structures involved in stability, transport and organization in the c...
Basal bodies and centrioles play central roles in microtubule (MT)-organizing centres within many eu...
Cells use motile cilia to generate force in the extracellular space. The structure of a cilium can b...
Cells use motile cilia to generate force in the extracellular space. The structure of a cilium can b...
Cilia are thin microtubule-based protrusions of eukaryotic cells. The swimming of ciliated protists ...
The outer dynein arms (ODAs) of the flagellar axoneme generate forces needed for flagellar beating. ...
SummaryMicrotubule doublet (MTD) is the main skeleton of cilia/flagella. Many proteins, such as dyne...
Doublet microtubules (DMTs) provide a scaffold for axoneme assembly in motile cilia. Aside from α/β ...
Doublet microtubules (DMTs) provide a scaffold for axoneme assembly in motile cilia. Aside from α/β ...
Cilia, the hair-like protrusions that beat at high frequencies to propel a cell or move fluid around...
The axoneme, which forms the core of eukaryotic flagella and cilia, is one of the largest macromolec...
Dynein-decorated doublet microtubules (DMTs) are critical components of the oscillatory molecular ma...
Although the overall structures of flagellar and cytoplasmic microtubules are understood, many detai...
AbstractBackground: The core of the eukaryotic flagellum is the axoneme, a complex motile organelle ...
Coordinated sliding of microtubule doublets, driven by dynein motors, produces periodic beating of t...
Microtubules are cytoskeletal structures involved in stability, transport and organization in the c...
Basal bodies and centrioles play central roles in microtubule (MT)-organizing centres within many eu...
Cells use motile cilia to generate force in the extracellular space. The structure of a cilium can b...
Cells use motile cilia to generate force in the extracellular space. The structure of a cilium can b...
Cilia are thin microtubule-based protrusions of eukaryotic cells. The swimming of ciliated protists ...
The outer dynein arms (ODAs) of the flagellar axoneme generate forces needed for flagellar beating. ...