16.7
Nuclear transport is controlled by masking nuclear localization sequences, altering the pore size of the nuclear pore complexes, and secreting precursor proteins.
NLS is masked either by phosphorylation of cargo as observed in the viral transcriptional factor, v-Jun, or by inhibitory proteins that bind the NLS on the cargo as observed in the regulation of NF-kappaB by the I-kappaB. These mechanisms interfere with the NLS recognition process, thereby retaining the cargo in the cytosol or other organelles.
Nuclear pore size is modulated by cytoskeletal proteins to control the size of macromolecules passing through the NPC. As a tight aqueous pore, the NPC expands and contracts to allow selective molecules to squeeze through.
Regulation by precursor proteins is observed in cholesterol metabolism. Sterol response element-binding protein or SREBP, is a precursor of a transcription factor that is present as a transmembrane protein in the ER attached to the SREBP cleavage activation protein or SCAP that is bound to cholesterol.
At low cholesterol concentrations, SCAP changes conformation and the SREBP-SCAP complex gets transported to the Golgi apparatus.
Golgi-resident proteases cleave SREBP's cytosolic domain yielding the active protein. This transcription factor is then imported to the nucleus to activate sterol regulatory DNA sequences.
Sortowanie białek jądrowych reguluje skład jądra i ekspresję genów, co ma kluczowe znaczenie dla określenia losu komórki eukariotycznej. Dlatego wejśc…
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