Page 78 - 71_01
P. 78
MARÍA CASCALES ANGOSTO AN. R. ACAD. NAC. FARM.
(9) XIE, Y.; VARSHAVSKY, A. (2000). Physical association of ubiquitin ligases and
(10) the 26S proteasome. Proc Natl Acad Sci USA 97, 2497-2502.
GLICKMAN, M. H., CIECHANOVER, A. (2000). The ubiquitin-proteasome proteo-
(11) lytic pathway: destruction for the sake of construction. Physiol Rev 82,
(12) 373-428.
(13) HILT, W. & WOLF, D. H. (1996). Proteasomes: destruction as a programme.
(14) Trends Biochem. Sci. 21, 96-102.
HOCHSTRASSER, M. Ubiquitin-dependent protein degradation. Annu. Rev. Ge-
(15) net. 30, 405-409.
(16) BAUMEISTER, W.; WALZ, J.; ZÜHL, F. & SEEMÜLLER, E. (1998). The proteasome
paradigm of a self-compartmentalizing protease. Cell. 92, 367-380.
(17) PETERS, J. M.; CEJKA, Z.; HARRIS, R. J.; KLEINSCHMIDT, J. A. & BAUMEISTER, W.
(1993). Structural features of the 26 S proteasome complex. J. Mol. Biol. 234,
(18) 932-937.
COUX, O.; TANAKA, K. & GOLDBERG, A. L. (1996). Structure and function of the
(19) 20S and 26S proteasomes. Annu. Rev. Biochem. 65, 801-847.
GROLL, M.; DITZEL, L.; LÖWE, J.; STOCK, D.; BOCHTLER, M.; BARTUNIK, H. D. &
(20) HUBER, R. (1997). Structure of 20S proteasome from yeast at 2.4 A resolution.
Nature (London) 386, 463-471.
(21) DAHLMANN, B.; KOPP, F.; KUEHN, L.; NIEDEL, B.; PFEIFER, G.; HEGERL, R. & BAU-
MEISTER, W. (1989). The multicatalytic proteinase (prosome) is ubiquituous
(22) from eucaryotes to archaeabacteria FEBS Lett. 251, 125-131.
GROLL, M.; HEINEMEYER, W.; JÄGER, S.; ULLRICH, T.; BOCHTLER, M.; WOLF, D. H.
(23) & HUBER, R. (1999). The catalytic sites of 20S proteasomes and their role in
(24) subunit maturation: A mutational and crystallographic study. Proc Natl Acad
(25) Sci. USA 96, 10976-10983.
(26) LÖWE, J.; STOCK, D.; JAP, B.; ZWICK, P.; BAUMEISTER, W. & HUBER, R. (1995).
(27) Crystal structure of the 20S proteasome from the archaeon T. acidophilum
at 3.4 A resolution. Science 268, 533-539.
SEEMÜLLER, E.; LUPAS, A.; STOCK, D.; LÖWE, J.; HUBER, R. & BAUMEISTER, W.
(1995). Proteasome from Thermoplasma acidophilum: a threonine protease.
Science 268, 579-581.
HEINEMEYER, W.; FISCHER, M.; KRIMMER, T.; STACHON, U. & WOLF, D. H. (1997).
The active sites of the eukaryotic 20 S proteasome and their involvement in
subunit precursor processing. J Biol Chem 272, 25200-25209.
FENTEANY, G.; STAENDAERT, R. F.; LANE, W. S. (1995). Inhibition of proteasome
activities and subunit-specific amino terminal threonine modification by
lactacystine. Science 268, 726-731.
PICKART, C. M. (2000). Structural features of the 26 S proteasome complex.
J Mol Biol 234, 932-937.
VARSHAVSKY, A. (1996). The ubiquitin system. Trends Biochem Sci 21, 96-102.
VARSHAVSKY, A. (1997). The N-end rule pathway of protein degradation. Genes
Cells 2, 13-28.
CLARKE, D. J. (2002). Proteolysis and the cell cycle. Cell Cycle, 1, 233-234.
PETERS, J. M. (2002). The anaphase-promoting complex: proteolysis in mito-
sis and beyond. Mol Cell. 9, 931-943.
80