Can the cytoskeleton be dismantled?

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asked Feb 25 in Science by sezro833 (1,940 points)
Can the cytoskeleton be dismantled?

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answered Feb 27 by Alyssa1gph (11,490 points)
The cytoskeleton can be dismantled as all 3 types of the cytoskeletal filaments undergo constant remodleing through assembly and disassembly of their subunits.

Cytoskeleton can break down as cytoskeleton and microtubules are known to undergo bending or buckling in cells that often results in the breaking of the cytoskeletal protein filament.

The three cytoskeleton examples are actin filaments, microtubules and a group of polymers known collectively as intermediate filaments.

Cytoskeleton is found in all cells except in those cells of most bacteria.

The cell that cytoskeleton is found in is eukaryotic cells which are cells containing a nucleus.

Cytoskeleton is found in both plant and animal cells and plays an essential role in cellular functions

The most important thing about the cytoskeleton is that it provides the structural framework for the cell and serves as a scaffold which determines the shape and the general organization of the cytoplasm as well as being responsible for cell movements.

Examples of cytoskeleton in a cell are actin filaments, microtubules and a group of polymers known collectively as intermediate filaments.

And together, these polymers control the shape and mechanics of eukaryotic cells.

The conclusion of the cytoskeleton is that the cytoskeleton of a cell is made up of microtubules, actin filaments, intermediate filaments.

The structures give the cell it's shape and help to organize the cell's parts and they provide a basis for movement and cell division.

The cytoskeleton in a house would be the beams of a house as they help the house hold it's shape.

The cytoskeleton is compared to an everyday object like support beams of a house or building as the cytoskeleton supports the shape of the cell like the support beams help to support the building.

An everyday object that is like a cytoskeleton would be a coat rack or even the beams of a house which help hold the shape of the house as the cytoskeleton holds the shape of the cell.

If a cell didn't have a cytoskeleton it would result in a lack of structural integrity in the cell.

The cell would also lose it's shape and structure and become permanently deformed and the cell would also have no mechanical resistance from external pressure and would also be easily damaged.

The cytoskeleton is necessary because of all the functional components of a living cell the cytoskeleton is considered to be the backbone of a cell as it provides the cell its shape and structure.

It is also pivotal in controlling inter- and intracellular transportation and also plays an important role during cell division and differentiation.

The 3 roles of the cytoskeleton are to provide structure and organization, resists and transmits stresses, and drives shape change and movement.

The diseases that are caused by cytoskeleton malfunction are spastic paraplegias, spinocerebellar ataxias, and mental retardation.

The cytoskeleton is a structure that helps cells maintain their shape and internal organization, and it also provides mechanical support that enables cells to carry out essential functions like division and movement.

The cytoskeleton in an animal cell is located in the cytoplasm.

The cytoskeleton can be found under the plasma membrane and nucleus for structure and support, and to help link cells to each other or the extracellular matrix.

The cytoskeleton is a structure that helps cells maintain their shape and internal organization, and it also provides mechanical support that enables cells to carry out essential functions like division and movement.

A cytoskeleton provides a structural framework for the cell, serving as a scaffold that determines cell shape and the general organization of the cytoplasm.

In addition to playing this structural role, the cytoskeleton is responsible for cell movements.

The cytoskeleton is a fascinating structure found in every cell of the human body.

Composed of protein filaments, it provides structural support, controls cellular motility, and facilitates intracellular transport.

Despite its crucial role, the cytoskeleton often goes unnoticed, overshadowed by other organelles.

There are three components of cytoskeletal components- microtubules, microfilaments, and intermediary filaments.

Despite the “micro” in their name, microtubules are the largest of the three types of cytoskeletal fibers, with a diameter of about 25 nm.

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