4.3 Article

Structural and degradative aspects of ornithine decarboxylase antizyme inhibitor 2

期刊

FEBS OPEN BIO
卷 4, 期 -, 页码 510-521

出版社

WILEY
DOI: 10.1016/j.fob.2014.05.004

关键词

Antizyme; Antizyme-binding element; Homology modeling; Polyamines; Protein degradation; Proteasome inhibitors

资金

  1. Seneca Foundation (Autonomous Community of Murcia) [08681/PI/08]
  2. Spanish Ministry of Science and Innovation [SAF2008-03638]
  3. Spanish Ministry of Economic Affairs and Competitiveness [SAF2011-29051]
  4. FEDER funds from The European Community
  5. Ministry of Education, Culture and Sport
  6. Federation of European Biochemical Societies (FEBS)
  7. Adam Mickiewicz University in Poznan', Poland
  8. International Institute of Molecular and Cell Biology in Warsaw
  9. European Union [POIG.02.03.00-00-003/09]

向作者/读者索取更多资源

Ornithine decarboxylase (ODC) is the key enzyme in the polyamine biosynthetic pathway. ODC levels are controlled by polyamines through the induction of antizymes (AZs), small proteins that inhibit ODC and target it to proteasomal degradation without ubiquitination. Antizyme inhibitors (AZIN1 and AZIN2) are proteins homologous to ODC that bind to AZs and counteract their negative effect on ODC. Whereas ODC and AZIN1 are well-characterized proteins, little is known on the structure and stability of AZIN2, the lastly discovered member of this regulatory circuit. In this work we first analyzed structural aspects of AZIN2 by combining biochemical and computational approaches. We demonstrated that AZIN2, in contrast to ODC, does not form homodimers, although the predicted tertiary structure of the AZIN2 monomer was similar to that of ODC. Furthermore, we identified conserved residues in the antizyme-binding element, whose substitution drastically affected the capacity of AZIN2 to bind AZ1. On the other hand, we also found that AZIN2 is much more labile than ODC, but it is highly stabilized by its binding to AZs. Interestingly, the administration of the proteasome inhibitor MG132 caused differential effects on the three AZ-binding proteins, having no effect on ODC, preventing the degradation of AZIN1, but unexpectedly increasing the degradation of AZIN2. Inhibitors of the lysosomal function partially prevented the effect of MG132 on AZIN2. These results suggest that the degradation of AZIN2 could be also mediated by an alternative route to that of proteasome. These findings provide new relevant information on this unique regulatory mechanism of polyamine metabolism. (C) 2014 The Authors. Published by Elsevier B.V. on behalf of the Federation of European Biochemical Societies. This is an open access article under the CC BY-NC-ND license.

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