26.4
Microtubule associated proteins or MAPs are proteins that interact with microtubules.
The structure of an individual MAP depends on the function it performs on the microtubules.
Stabilizers promote polymerization of tubulin and impede depolymerization. In neurons, Tau stabilizes the axonal microtubules by using its positively charged domain to bind laterally to the negatively charged microtubule surface, thereby reducing the frequency and duration of catastrophe.
Destabilizers disrupt microtubules and increase the number of free tubulin subunits. Stathmin, a destabilizer, binds to the alpha-beta tubulin heterodimer, changing the dimer's conformation and preventing it from assembling on the microtubule.
Capping proteins adhere to the plus or minus-end of microtubules and alter assembly and disassembly. For example, the gamma-tubulin ring complex binds to the minus-end of the microtubule, leading to microtubule nucleation and allowing assembly only at the plus-end.
Crosslinker MAPs laterally interconnect microtubules. MAP65 , a crosslinker, bundles antiparallel microtubule filaments during anaphase.
The final group, cytoskeletal integrators, connects the microtubule filament to other cytoskeletal elements.
Plakins are an example of a cytoskeletal integrator that binds microtubules to intermediate filaments.
De functie en architectuur van microtubuli worden gereguleerd door een reeks gespecialiseerde eiwitten die microtubuli-geassocieerde eiwitten of MAP's…
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