25.2
Cytoskeletal adaptability is required to perform diverse cellular functions, including cell movement and division, and provide mechanical support to cellular components.
Amongst the three cytoskeletal filaments, microfilaments and microtubules are dynamic in nature. Microfilaments are present in structures such as lamellipodia and filopodia, where they help in cell movement.
Microtubules rearrange themselves during cell division to form the bipolar mitotic spindles to segregate the chromosomes in the daughter cells.
On the other hand, intermediate filaments are static and do not undergo constant reorganization. They provide mechanical support to the plasma membrane.
Regulatory proteins control the assembly or disassembly of the dynamic cytoskeletal filaments. For example, nucleation-promoting factors initiate filament formation, and capping proteins terminate filament growth. Polymerases control the rate of filament assembly while depolymerizing factors regulate their disassembly.
The cytoskeleton is a complex dynamic structure performing varied functions based on cellular requirements. The adaptability of the individual filamen…
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