Abstract The propulsion for mammalian sperm swimming is generated by flagella beating. Microtubule doublets (DMTs) along with microtubule inner proteins (MIPs) are essential structural blocks of flagella. However, the intricate molecular architecture of intact sperm DMT remains elusive. Here, by in situ cryo-electron tomography, we solved the in-cell structure of mouse sperm DMT at 4.5–7.5 Å resolutions, and built its model with 36 kinds of MIPs in 48 nm periodicity. We identified multiple copies of Tektin5 that reinforce Tektin bundle, and multiple MIPs with different periodicities that anchor the Tektin bundle to tubulin wall. This architecture contributes to a superior stability of A-tubule than B-tubule of DMT, which was revealed by str...
4 p.-7 fig.The diverse structures from mouse spermatids and spermatozoa were dissociated and observe...
SummaryMicrotubule doublet (MTD) is the main skeleton of cilia/flagella. Many proteins, such as dyne...
The axoneme, which forms the core of eukaryotic flagella and cilia, is one of the largest macromolec...
The flagella of mammalian sperm display non-planar, asymmetric beating, in contrast to the planar, s...
Motile cilia are molecular machines used by a myriad of eukaryotic cells to swim through fluid envir...
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 ...
Abstract Background The spermatozoon has a complex molecular apparatus necessary for fertilization i...
Posttranslational modifications of the microtubule cytoskeleton have emerged as key regulators of ce...
Dynein-decorated doublet microtubules (DMTs) are critical components of the oscillatory molecular ma...
Mammalian spermatozoa motility is a subject of growing importance because of rising human infertilit...
AbstractBackground: The core of the eukaryotic flagellum is the axoneme, a complex motile organelle ...
Eukaryotic flagellar swimming is driven by a slender motile unit, the axoneme, which possesses an in...
Conception in mammals is determined by the fusion of a sperm cell with an oocyte during fertilizatio...
The sperm calcium channel CatSper plays a central role in successful fertilization as a primary Ca2+...
4 p.-7 fig.The diverse structures from mouse spermatids and spermatozoa were dissociated and observe...
SummaryMicrotubule doublet (MTD) is the main skeleton of cilia/flagella. Many proteins, such as dyne...
The axoneme, which forms the core of eukaryotic flagella and cilia, is one of the largest macromolec...
The flagella of mammalian sperm display non-planar, asymmetric beating, in contrast to the planar, s...
Motile cilia are molecular machines used by a myriad of eukaryotic cells to swim through fluid envir...
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 ...
Abstract Background The spermatozoon has a complex molecular apparatus necessary for fertilization i...
Posttranslational modifications of the microtubule cytoskeleton have emerged as key regulators of ce...
Dynein-decorated doublet microtubules (DMTs) are critical components of the oscillatory molecular ma...
Mammalian spermatozoa motility is a subject of growing importance because of rising human infertilit...
AbstractBackground: The core of the eukaryotic flagellum is the axoneme, a complex motile organelle ...
Eukaryotic flagellar swimming is driven by a slender motile unit, the axoneme, which possesses an in...
Conception in mammals is determined by the fusion of a sperm cell with an oocyte during fertilizatio...
The sperm calcium channel CatSper plays a central role in successful fertilization as a primary Ca2+...
4 p.-7 fig.The diverse structures from mouse spermatids and spermatozoa were dissociated and observe...
SummaryMicrotubule doublet (MTD) is the main skeleton of cilia/flagella. Many proteins, such as dyne...
The axoneme, which forms the core of eukaryotic flagella and cilia, is one of the largest macromolec...