115
Views
7
CrossRef citations to date
0
Altmetric
Imaging Radiation Effects on the Cellular 26S Proteasome

Imaging of radiation effects on cellular 26S proteasome function in situ

, , , &
Pages 483-494 | Received 06 Feb 2008, Accepted 09 Mar 2009, Published online: 08 Oct 2009

References

  • Chau V, Tobias J W, Bachmair A, Marriott D, Ecker D J, Gonda D K, Varshavsky A. A multiubiquitin chain is confined to specific lysine in a targeted short-lived protein. Science 1989; 243: 1576–1583
  • Ding Q, Dimayuga E, Keller J N. Proteasome regulation of oxidative stress in aging and age-related diseases of the CNS. Antioxidants and Redox Signaling 2006; 8: 163–172
  • Dong X, Liu J, Zheng H, Glasford J W, Huang W, Chen Q H, Harden N R, Li F, Gerdes A M, Wang X. In situ dynamically monitoring the proteolytic function of the ubiquitin-proteasome system in cultured cardiac myocytes. American Journal of Physiology – Heart and Circulatory Physiology 2004; 287: H1417–1425
  • Evdonin A L, Tsupkina N V, Konstantinova I M, Medvedeva N D. Effect of EGF on nuclear-cytoplasmic distribution of proteasomes in A-431 cells. Tsitologiia 2001; 43: 142–147
  • Ghoda L, Basu H S, Porter C W, Marton L J, Coffino P. Role of ornithine decarboxylase suppression and polyamine depletion in the antiproliferative activity of polyamine analogs. Molecular Pharmacology 1992a; 42: 302–306
  • Ghoda L, Sidney D, Macrae M, Coffino P. Structural elements of ornithine decarboxylase required for intracellular degradation and polyamine-dependent regulation. Molecular Cell Biology 1992b; 12: 2178–2185
  • Hershko A. Roles of ubiquitin-mediated proteolysis in cell cycle control. Current Opinion in Cell Biology 1997; 9: 788–799
  • Hirsch C, Ploegh H L. Intracellular targeting of the proteasome. Trends in Cell Biology 2000; 10: 268–272
  • Hoyt M A, Zhang M, Coffino P. Ubiquitin-independent mechanisms of mouse ornithine decarboxylase degradation are conserved between mammalian and fungal cells. Journal of Biological Chemistry 2003; 278: 12135–12143
  • Hoyt M A, Zhang M, Coffino P. Probing the ubiquitin/proteasome system with ornithine decarboxylase, a ubiquitin-independent substrate. Methods in Enzymology 2005; 398: 399–413
  • Jacquemont C, Taniguchi T. Proteasome function is required for DNA damage response and fanconi anemia pathway activation. Cancer Research 2007; 67: 7395–7405
  • Jung T, Engels M, Kaiser B, Poppek D, Grune T. Intracellular distribution of oxidized proteins and proteasome in HT22 cells during oxidative stress. Free Radical Biology and Medicine 2006; 40: 1303–1312
  • Kim K, Brush J M, Watson P A, Cacalano N A, Iwamoto K S, McBride W H. Epidermal growth factor receptor vIII expression in U87 glioblastoma cells alters their proteasome composition, function, and response to irradiation. Molecular Cancer Research 2008; 6: 426–434
  • Kiyomiya K, Matsuo S, Kurebe M. Mechanism of specific nuclear transport of adriamycin: The mode of nuclear translocation of adriamycin-proteasome complex. Cancer Research 2001; 61: 2467–2471
  • Kloetzel P M. Generation of major histocompatibility complex class I antigens: Functional interplay between proteasomes and TPPII. Nature Immunology 2004; 5: 661–669
  • Krogan N J, Lam M H, Fillingham J, Keogh M C, Gebbia M, Li J, Datta N, Cagney G, Buratowski S, Emili A, Greenblatt J F. Proteasome involvement in the repair of DNA double-strand breaks. Molecular Cell 2004; 16: 1027–1034
  • Leach J K, Van Tuyle G, Lin P S, Schmidt-Ullrich R, Mikkelsen R B. Ionizing radiation-induced, mitochondria-dependent generation of reactive oxygen/nitrogen. Cancer Research 2001; 61: 3894–3901
  • Lev N, Melamed E, Offen D. Proteasomal inhibition hypersensitizes differentiated neuroblastoma cells to oxidative damage. Neuroscience Letters 2006; 399: 27–32
  • Li X, Zhao X, Fang Y, Jiang X, Duong T, Fan C, Huang C C, Kain S R. Generation of destabilized green fluorescent protein as a transcription reporter. Journal of Biological Chemistry 1998; 273: 34970–34975
  • Liu X, Huang W, Li C, Li P, Yuan J, Li X, Qiu X B, Ma Q, Cao C. Interaction between c-Abl and Arg tyrosine kinases and proteasome subunit PSMA7 regulates proteasome degradation. Molecular Cell 2006; 22: 317–327
  • McBride W H, Iwamoto K S, Syljuasen R, Pervan M, Pajonk F. The role of the ubiquitin/proteasome system in cellular responses to radiation. Oncogene 2003; 22: 5755–5773
  • McBride W H, Pajonk F, Chiang C S, Sun J R. NF-kappa B, cytokines, proteasomes, and low-dose radiation exposure. Military Medicine 2002; 167: 66–67
  • Nakagawa T, Shirane M, Iemura S, Natsume T, Nakayama K I. Anchoring of the 26S proteasome to the organellar membrane by FKBP38. Genes and Cells 2007; 12: 709–719
  • Luker G D, Pica C M, Song J, Luker K E, Piwnica-Worms D. Imaging 26S proteasome activity and inhibition in living mice. Nature Medicine 2003; 9: 969–973
  • Paddison P J, Silva J M, Conklin D S, Schlabach M, Li M, Aruleba S, Balija V, O'Shaughnessy A, Gnoj L, Scobie K, Chang K, Westbrook T, Cleary M, Sachidanandam R, McCombie W R, Elledge S J, Hannon G J. A resource for large-scale RNA-interference-based screens in mammals. Nature 2004; 428: 427–431
  • Pagano M, Tam S W, Theodoras A M, Beer-Romero P, Del Sal G, Chau V, Yew P R, Draetta G F, Rolfe M. Role of the ubiquitin-proteasome pathway in regulating abundance of the cyclin-dependent kinase inhibitor p27. Science 1995; 269: 682–685
  • Pajonk F, Grumann T, McBride W H. The proteasome inhibitor MG-132 protects hypoxic SiHa cervical carcinoma cells after cyclic hypoxia/reoxygenation from ionizing radiation. Neoplasia 2006; 8: 1037–1041
  • Pajonk F, McBride W H. Ionizing radiation affects 26s proteasome function and associated molecular responses, even at low doses. Radiotherarpy and Oncology 2001; 59: 203–212
  • Pajonk F, Pajonk K, McBride W H. Inhibition of NF-kappaB, clonogenicity, and radiosensitivity of human cancer cells. Journal of the National Cancer Institute 1999; 91: 1956–1960
  • Pajonk F, Riess K, Sommer A, McBride W H. N-acetyl-L-cysteine inhibits 26S proteasome function: implications for effects on NF-kappaB activation. Free Radicals in Biology and Medicine 2002; 32: 536–543
  • Papa L, Gomes E, Rockwell P. Reactive oxygen species induced by proteasome inhibition in neuronal cells mediate mitochondrial dysfunction and a caspase-independent cell death. Apoptosis 2007; 12: 1389–1405
  • Pervan M, Iwamoto K S, McBride W H. Proteasome structures affected by ionizing radiation. Molecular Cancer Research 2005; 3: 381–390
  • Pervan M, Pajonk F, Sun J R, Withers H R, McBride W H. Molecular pathways that modify tumor radiation response. American Journal of Clinical Oncology 2001; 24: 481–485
  • Poppek D, Keck S, Ermak G, Jung T, Stolzing A, Ullrich O, Davies K J, Grune T. Phosphorylation inhibits turnover of the tau protein by the proteasome: Influence of RCAN1 and oxidative stress. Biochemical Journal 2006; 400: 511–520
  • Rasband W S. ImageJ. U.S. National Institutes of Health, Bethesda, MarylandUSA 1997–2008, http://rsb.info.nih.gov/ij/, 1997–2008
  • Reinheckel T, Sitte N, Ullrich O, Kuckelkorn U, Davies K J, Grune T. Comparative resistance of the 20S and 26S proteasome to oxidative stress. Biochemical Journal 1998; 335(Pt 3)637–642
  • Reinheckel T, Ullrich O, Sitte N, Grune T. Differential impairment of 20S and 26S proteasome activities in human hematopoietic K562 cells during oxidative stress. Archives of Biochemistry and Biophysics 2000; 377: 65–68
  • Reits E A, Benham A M, Plougastel B, Neefjes J, Trowsdale J. Dynamics of proteasome distribution in living cells. EMBO Journal 1997; 16: 6087–6094
  • Rivett A J. Intracellular distribution of proteasomes. Current Opinions in Immunology 1998; 10: 110–114
  • Soldatenkov V A, Dritschilo A. Apoptosis of Ewing's sarcoma cells is accompanied by accumulation of ubiquitinated proteins. Cancer Research 1997; 57: 3881–3885
  • Sullivan P G, Dragicevic N B, Deng J H, Bai Y, Dimayuga E, Ding Q, Chen Q, Bruce-Keller A J, Keller J N. Proteasome inhibition alters neural mitochondrial homeostasis and mitochondria turnover. Journal of Biological Chemistry 2004; 279: 20699–20707
  • Takami K, Zaleska-Rutczynska Z, Figueroa F, Klein J. Linkage of LMP, TAP, and RING3 with Mhc class I rather than class II genes in the zebrafish. Journal of Immunology 1997; 159: 6052–6060
  • Takeuchi J, Chen H, Coffino P. Proteasome substrate degradation requires association plus extended peptide. EMBO Journal 2007; 26: 123–131
  • Tanahashi N, Tsurumi C, Tamura T, Tanaka K. Molecular structure of 20S and 26S proteasomes. Enzyme Protein 1993; 47: 241–251
  • Tanaka K, Yoshimura T, Kumatori A, Ichihara A, Ikai A, Nishigai M, Kameyama K, Takagi T. Proteasomes (multi-protease complexes) as 20 S ring-shaped particles in a variety of eukaryotic cells. Journal of Biological Chemistry 1988; 263: 16209–16217
  • Thrower J S, Hoffman L, Rechsteiner M, Pickart C M. Recognition of the polyubiquitin proteolytic signal. EMBO Journal 2000; 19: 94–102
  • Torres C A, Perez V I. Proteasome modulates mitochondrial function during cellular senescence. Free Radicals in Biology and Medicine 2008; 44: 403–414
  • Unno M, Mizushima T, Morimoto Y, Tomisugi Y, Tanaka K, Yasuoka N, Tsukihara T. The structure of the mammalian 20S proteasome at 2.75 A resolution. Structure 2002; 10: 609–618
  • Varshavsky A. The N-end rule and regulation of apoptosis. Nature Cell Biology 2003; 5: 373–376
  • Varshavsky A. Regulated protein degradation. Trends in Biochemical Science 2005; 30: 283–286
  • Ye Y. The role of the ubiquitin-proteasome system in ER quality control. Essays in Biochemistry 2005; 41: 99–112
  • Zhang M, Pickart C M, Coffino P. Determinants of proteasome recognition of ornithine decarboxylase, a ubiquitin-independent substrate. EMBO Journal 2003; 22: 1488–1496

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.