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Microtubules were first discovered by the cell biologist Keith R. Porter in 1945 as he was investigating the structure of cells using electron microscopy. They play a crucial role in cell shape, structure, division, and intracellular transport.
The MTOC organizes microtubules. plain and simple
Axoneme is the slender tubes that provide movement in cilia and flagella. It is made up of microtubules arranged in a specific pattern that generates the whip-like motion of these cellular structures.
The cytoskeletal element assembled at the centrosome is the microtubule. The centrosome serves as the main microtubule-organizing center in animal cells, where it nucleates and organizes the microtubules that form the cell's cytoskeleton.
Drugs like taxol inhibit microtubule depolymerization by stabilizing the microtubules and preventing them from disassembling. Additionally, proteins like stathmin bind to tubulin dimers and promote microtubule depolymerization, so inhibiting their activity can also prevent depolymerization.
Microtubules were first discovered by the cell biologist Keith R. Porter in 1945 as he was investigating the structure of cells using electron microscopy. They play a crucial role in cell shape, structure, division, and intracellular transport.
Microtubule producing centers are most closely associated with?
yes
One end of a microtubule can grow or release dimers at a faster rate than the other.
Yes, plants have microtubule organizing centers called plant microtubule-organizing centers (PMOCs). These structures help to organize and regulate the microtubules, which are important for various cellular processes such as cell division and organelle movement.
A microtubule
centrosomes
A centriole is a type of microtubule-producing center. It is a cylindrical organelle which is responsible for the development of spindle fibers in cell division.
microtubule - associated protein
The MTOC organizes microtubules. plain and simple
Yes they are located in the cytoplasm.
it is a spindle