Dynamic organization of the cell interior, which is crucial for cell function, largely depends on the microtubule cytoskeleton. Microtubules move and position organelles by pushing, pulling, or sliding. Pushing forces can be generated by microtubule polymerization, whereas pulling typically involves microtubule depolymerization or molecular motors, or both. Sliding between a microtubule and another microtubule, an organelle, or the cell cortex is also powered by molecular motors. Although numerous examples of microtubule-based pushing and pulling in living cells have been observed, it is not clear why different cell types and processes employ different mechanisms. This review introduces a classification of microtubule-based positioning stra...
In this paper, I consider the available vidence that, in certain cases, cytoplasmic microtubules mov...
SummaryCytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mecha...
SummaryDynamic properties of microtubules contribute to the establishment of spatial order within ce...
Dynamic organization of the cell interior, which is crucial for cell function, largely depends on th...
<p>A brief look at the animal and plant kingdom shows a large variety of spatial patterns like the p...
Microtubules are required for several cellular processes including vesicle transport, cytoplasmic or...
In addition to serving as structural elements and as tracks for motor proteins, microtubules use che...
Microtubules and other proteins self-organize into complex dynamic structures such as the mitotic sp...
Cytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mechanical f...
The cell interior is in constant movement, which is to a large extent determined by microtubules, th...
While many cell types are able to generate cellular movement through the action of the actomyosin cy...
Eukaryotic cells possess motility mechanisms allowing them not only to self-propel but also to exert...
Microtubules are rigid cytoskeletal filaments, and their mechanics affect cell morphology and cellul...
The centrosome is positioned at the cell center by pushing and pulling forces transmitted by microtu...
International audienceThe centrosome is positioned at the cell center by pushing and pulling forces ...
In this paper, I consider the available vidence that, in certain cases, cytoplasmic microtubules mov...
SummaryCytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mecha...
SummaryDynamic properties of microtubules contribute to the establishment of spatial order within ce...
Dynamic organization of the cell interior, which is crucial for cell function, largely depends on th...
<p>A brief look at the animal and plant kingdom shows a large variety of spatial patterns like the p...
Microtubules are required for several cellular processes including vesicle transport, cytoplasmic or...
In addition to serving as structural elements and as tracks for motor proteins, microtubules use che...
Microtubules and other proteins self-organize into complex dynamic structures such as the mitotic sp...
Cytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mechanical f...
The cell interior is in constant movement, which is to a large extent determined by microtubules, th...
While many cell types are able to generate cellular movement through the action of the actomyosin cy...
Eukaryotic cells possess motility mechanisms allowing them not only to self-propel but also to exert...
Microtubules are rigid cytoskeletal filaments, and their mechanics affect cell morphology and cellul...
The centrosome is positioned at the cell center by pushing and pulling forces transmitted by microtu...
International audienceThe centrosome is positioned at the cell center by pushing and pulling forces ...
In this paper, I consider the available vidence that, in certain cases, cytoplasmic microtubules mov...
SummaryCytoskeletal remodeling is essential to eukaryotic cell division and morphogenesis. The mecha...
SummaryDynamic properties of microtubules contribute to the establishment of spatial order within ce...