Intermediates in the formation of mouse 20S proteasomes: Implications for the assembly of precursor beta subunits

被引:151
作者
Nandi, D
Woodward, E
Ginsburg, DB
Monaco, JJ
机构
[1] UNIV CINCINNATI,HOWARD HUGHES MED INST,CINCINNATI,OH 45267
[2] UNIV CINCINNATI,DEPT MOL GENET,CINCINNATI,OH 45267
[3] VIRGINIA COMMONWEALTH UNIV,MED COLL VIRGINIA,DEPT IMMUNOL & MICROBIOL,RICHMOND,VA 23298
关键词
macromolecular assembly; precursor beta subunits; proteasome biogenesis; protein degradation;
D O I
10.1093/emboj/16.17.5363
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The assembly of individual proteasome subunits into catalytically active mammalian 20S proteasomes is not well understood, Using subunit-specific antibodies, we characterized both precursor and mature proteasome complexes, Antibodies to PSMA4 (C9) immunoprecipitated complexes composed of alpha, precursor beta and processed beta subunits, However, antibodies to PSMA3 (C8) and PSMBB (LMP2) immunoprecipitated complexes made up of alpha and precursor beta but no processed beta subunits. These complexes possess short half-lives, are enzymatically inactive and their molecular weight is similar to 300 kDa. Radioactivity chases from these complexes into mature, long-lived similar to 700 kDa proteasomes, Therefore, these structures represent precursor proteasomes and are probably made up of two rings: one containing a subunits and the other, precursor beta subunits, The assembly of precursor proteasomes occurs in at least two stages, with precursor beta subunits PSMB2 (C7-I), PSMB3 (C10-II), PSMB7 (Z), PSMB9 (LMP2) and PSMB10 (LMP10) being incorporated before others [PSMB1 (C5), PSMB6 (delta), and PSMB8 (LMP7)], Proteasome maturation (processing of the beta subunits and juxtaposition of the two beta rings) is accompanied by conformational changes in the (outer) a rings, and may be inefficient, Finally, interferon-gamma had no significant effect on the half-lives or total amounts of precursor or mature proteasomes.
引用
收藏
页码:5363 / 5375
页数:13
相关论文
共 71 条
[1]  
AHN JY, 1995, FEBS LETT, V366, P37, DOI 10.1016/0014-5793(95)00492-R
[2]   INTERFERON-GAMMA INDUCES DIFFERENT SUBUNIT ORGANIZATIONS AND FUNCTIONAL DIVERSITY OF PROTEASOMES [J].
AKI, M ;
SHIMBARA, N ;
TAKASHINA, M ;
AKIYAMA, K ;
KAGAWA, S ;
TAMURA, T ;
TANAHASHI, N ;
YOSHIMURA, T ;
TANAKA, K ;
ICHIHARA, A .
JOURNAL OF BIOCHEMISTRY, 1994, 115 (02) :257-269
[3]   INTERFERON-GAMMA STIMULATION MODULATES THE PROTEOLYTIC ACTIVITY AND CLEAVAGE SITE PREFERENCE OF 20S MOUSE PROTEASOMES [J].
BOES, B ;
HENGEL, H ;
RUPPERT, T ;
MULTHAUP, G ;
KOSZINOWSKI, UH ;
KLOETZEL, PM .
JOURNAL OF EXPERIMENTAL MEDICINE, 1994, 179 (03) :901-909
[4]  
BROWN MG, 1993, J IMMUNOL, V151, P1193
[5]   STRUCTURAL AND SEROLOGICAL SIMILARITY OF MHC-LINKED LMP AND PROTEASOME (MULTICATALYTIC PROTEINASE) COMPLEXES [J].
BROWN, MG ;
DRISCOLL, J ;
MONACO, JJ .
NATURE, 1991, 353 (6342) :355-357
[6]   GENES ENCODED IN THE MAJOR HISTOCOMPATIBILITY COMPLEX AFFECTING THE GENERATION OF PEPTIDES FOR TAP TRANSPORT [J].
CERUNDOLO, V ;
KELLY, A ;
ELLIOTT, T ;
TROWSDALE, J ;
TOWNSEND, A .
EUROPEAN JOURNAL OF IMMUNOLOGY, 1995, 25 (02) :554-562
[7]   The proteasome-specific inhibitor lactacystin blocks presentation of cytotoxic T lymphocyte epitopes in human and murine cells [J].
Cerundolo, V ;
Benham, A ;
Braud, V ;
Mukherjee, S ;
Gould, K ;
Macino, B ;
Neefjes, J ;
Townsend, A .
EUROPEAN JOURNAL OF IMMUNOLOGY, 1997, 27 (01) :336-341
[8]   Autocatalytic subunit processing couples active site formation in the 20S proteasome to completion of assembly [J].
Chen, P ;
Hochstrasser, M .
CELL, 1996, 86 (06) :961-972
[9]   BIOGENESIS, STRUCTURE AND FUNCTION OF THE YEAST 20S PROTEASOME [J].
CHEN, P ;
HOCHSTRASSER, M .
EMBO JOURNAL, 1995, 14 (11) :2620-2630
[10]  
COUX O, 1996, ANNU REV BIOCHEM, V65, P80