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  The import pathway of human and Thermoplasma 20S proteasomes into HeLa cell nuclei is different from that of classical NLS-bearing proteins

Mayr, J., Wang, H. R., Nederlof, P., & Baumeister, W. (1999). The import pathway of human and Thermoplasma 20S proteasomes into HeLa cell nuclei is different from that of classical NLS-bearing proteins. Biological Chemistry, 380(10), 1183-1192.

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Genre: Journal Article
Alternative Title : Biol. Chem

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Mayr, J., Author
Wang, H. R., Author
Nederlof, P., Author
Baumeister, W.1, Author           
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1External Organizations, ou_persistent22              

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Free keywords: Nls; Nuclear import; Proteasomes; Thermoplasma.; Localization signals; Binding-proteins; Dna-binding; Sequence; Identification; Ran; Acidophilum; Subunits; Receptor; Ran/tc4.; Biochemistry & Biophysics in Current Contents(R)/Life Sciences.
 Abstract: Wild-type proteasomes of human erythrocytes and the archaeon Thermoplasma acidophilum compete with each other for transport into nuclei of digitonin-permeabilized HeLa cells in the presence of an energy-regenerating system and rabbit reticulocyte lysate. 'NLS'-mutated Thermoplasma proteasomes were also able to compete with human proteasomes in the same assay, although with lower efficiency. Furthermore, in contrast to the other archaeal and bacterial cell lysates tested, the Thermoplasma cytosol efficiently supported nuclear import of human and Thermoplasma proteasomes. However, the same lysate could barely direct the nuclear transport of BSA-NLSSV40 peptide conjugates or the classical NLS-bearing protein, nucleoplasmin. Finally, additional importin alpha/beta significantly decreased the import efficiency of both human and Thermoplasma proteasomes. Taken together, these results suggest that nuclear import of proteasomes may use a novel pathway that is different from that of classical NLS-bearing proteins. [References: 52]

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 Dates: 1999
 Publication Status: Issued
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 Identifiers: eDoc: 318611
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Title: Biological Chemistry
  Alternative Title : Biol. Chem
Source Genre: Journal
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Pages: - Volume / Issue: 380 (10) Sequence Number: - Start / End Page: 1183 - 1192 Identifier: -