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Microtubules group together to form complex assemblies with the help of specific motor proteins and microtubule-associated proteins or MAPs.
These structures are essential to various cellular functions such as communication of neural signals, mitotic spindle formation, and chromosome segregation.
Integrated microtubule networks relay neural signals received by dendrites—the short, branched end of a neuron to axons—the long, slender end where signals can be transmitted to neighboring cells.
The microtubule architecture in axons and dendrites differ in polarity, organization, and MAPs. They also undergo specific post-translational modifications that further regulate structure and function.
Axonal microtubules undergo modifications like acetylation, polyamination, and long-chain glutamylation, while dendritic microtubules are tyrosinated, acetylated, and short-chain glutamylated.
The axons have uniformly arranged microtubules with the plus end towards its terminal, but mixed polarity microtubule assemblies are found in dendrites.
The assembly of these complex structures involves a multi-step process with a variety of proteins.
Complex microtubule structures are present in resting cells and in dividing cells. In resting cells, they are responsible for maintaining the cellular…
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