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Classical NLS proteins from Saccharomyces cerevisiae
Authors:Hahn Silvia  Maurer Patrick  Caesar Stefanie  Schlenstedt Gabriel
Institution:Medizinische Biochemie und Molekularbiologie, Universität des Saarlandes, Geb. 61.4, 66421 Homburg, Germany
Abstract:Proteins can enter the nucleus through various receptor-mediated import pathways. One class of import cargos carries a classical nuclear localization signal (cNLS) containing a short cluster of basic residues. This pathway involves importin α (Impα), which possesses the cNLS binding site, and importin β (Impβ), which translocates the import complex through the nuclear pore complex. The defining criteria for a cNLS protein from Saccharomyces cerevisiae are an in vivo import defect in Impα and Impβ mutants, direct binding to purified Impα, and stimulation of this binding by Impβ. We show for the first time that endogenous S. cerevisiae proteins Prp20, Cdc6, Swi5, Cdc45, and Clb2 fulfill all of these criteria identifying them as authentic yeast cNLS cargos. Furthermore, we found that the targeting signal of Prp20 is a bipartite cNLS and that of Cdc6 is a monopartite cNLS. Basic residues present within these motifs are of different significance for the interaction with Impα. We determined the binding constants for import complexes containing the five cNLS proteins by surface plasmon resonance spectrometry. The dissociation constants for cNLS/α/β complexes differ considerably, ranging from 1 nM for Cdc6 to 112 nM for Swi5, suggesting that the nuclear import kinetics is determined by the strength of cNLS/Impα binding. Impβ enhances the affinity of Impα for cNLSs approximately 100-fold. This stimulation of cNLS binding to Impα results from a faster association in the presence of Impβ, whereas the dissociation rate is unaffected by Impβ. This implies that, after entry into the nucleus, the release of Impβ by the Ran guanosine triphosphatase (Ran GTPase) from the import complex is not sufficient to dissociate the cNLS/Impα subcomplex. Our observation that the nucleoporin Nup2, which had been previously shown to release the cNLS from Impα in vitro, is required for efficient import of all the genuine cNLS cargos supports a general role of Nup2 in import termination.
Keywords:cNLS  classical nuclear localization signal  Impα  importin α  Impβ  importin β  NPC  nuclear pore complex  GTP  guanosine 5&prime  -triphosphate  NLS  nuclear localization signal  SV40  simian virus 40  ARM  armadillo  IBB  Impβ binding  SPR  surface plasmon resonance  GFP  green fluorescent protein  GST  glutathione-S-transferase  GDP  guanosine diphosphate  DAPI  4&prime    6&prime  -diamidino-2-phenylindole  TEV  tobacco etch virus  FITC  fluorescein isothiocyanate  BSA  bovine serum albumin
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