9TMS | pdb_00009tms

Human sperm 20S-PA200 proteasome complex isolated from native source


Protein Family Annotation Pfam Database Homepage

ChainsAccessionNameDescriptionCommentsSource
I [auth L],
W [auth Z]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
H [auth K],
V [auth Y]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
G [auth J],
U [auth X]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
F [auth I],
T [auth W]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
F [auth I],
T [auth W]
PF12465Proteasome beta subunits C terminal (Pr_beta_C)Proteasome beta subunits C terminal- Family
E [auth H],
S [auth V]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
D [auth G],
R [auth U]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
D [auth G],
R [auth U]
PF10584Proteasome subunit A N-terminal signature (Proteasome_A_N)Proteasome subunit A N-terminal signature- Family
C [auth F],
Q [auth T]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
C [auth F],
Q [auth T]
PF10584Proteasome subunit A N-terminal signature (Proteasome_A_N)Proteasome subunit A N-terminal signature- Family
B,
M [auth P]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
B,
M [auth P]
PF10584Proteasome subunit A N-terminal signature (Proteasome_A_N)Proteasome subunit A N-terminal signature- Family
BA [auth E],
P [auth S]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
BA [auth E],
P [auth S]
PF10584Proteasome subunit A N-terminal signature (Proteasome_A_N)Proteasome subunit A N-terminal signature- Family
AA [auth D],
O [auth R]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
AA [auth D],
O [auth R]
PF10584Proteasome subunit A N-terminal signature (Proteasome_A_N)Proteasome subunit A N-terminal signature- Family
N [auth Q],
Z [auth C]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
N [auth Q],
Z [auth C]
PF10584Proteasome subunit A N-terminal signature (Proteasome_A_N)Proteasome subunit A N-terminal signature- Family
K [auth N],
Y [auth b]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
J [auth M],
X [auth a]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
A,
L [auth O]
PF00227Proteasome subunit (Proteasome)Proteasome subunitThe proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity ...The proteasome is a multisubunit structure that degrades proteins. Protein degradation is an essential component of regulation because proteins can become misfolded, damaged, or unnecessary. Proteasomes and their homologues vary greatly in complexity: from HslV (heat shock locus v), which is encoded by 1 gene in bacteria, to the eukaryotic 20S proteasome, which is encoded by more than 14 genes [1]. Recently evidence of two novel groups of bacterial proteasomes was proposed. The first is Anbu, which is sparsely distributed among cyanobacteria and proteobacteria [1]. The second is call beta-proteobacteria proteasome homologue (BPH) [1].
Domain
A,
L [auth O]
PF10584Proteasome subunit A N-terminal signature (Proteasome_A_N)Proteasome subunit A N-terminal signature- Family

Gene Ontology: Gene Product Annotation Gene Ontology Database Homepage

ChainsPolymerMolecular FunctionBiological ProcessCellular Component
I [auth L],
W [auth Z]
Proteasome subunit beta type-5
H [auth K],
V [auth Y]
Proteasome subunit beta type-2
G [auth J],
U [auth X]
Proteasome subunit beta type-3
F [auth I],
T [auth W]
Proteasome subunit beta type-7
E [auth H],
S [auth V]
Proteasome subunit beta type-6
D [auth G],
R [auth U]
Proteasome subunit alpha type-3
C [auth F],
Q [auth T]
Proteasome subunit alpha type-1
B,
M [auth P]
Proteasome subunit alpha type-2
CA [auth c]Proteasome activator complex subunit 4
BA [auth E],
P [auth S]
Proteasome subunit alpha type-5
AA [auth D],
O [auth R]
Isoform 3 of Proteasome subunit alpha-type 8-
N [auth Q],
Z [auth C]
Proteasome subunit alpha type-4
K [auth N],
Y [auth b]
Proteasome subunit beta type-4
J [auth M],
X [auth a]
Proteasome subunit beta type-1
A,
L [auth O]
Proteasome subunit alpha type-6

InterPro: Protein Family Classification InterPro Database Homepage

ChainsAccessionNameType
I [auth L],
W [auth Z]
IPR016050Proteasome beta-type subunit, conserved siteConserved Site
I [auth L],
W [auth Z]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
I [auth L],
W [auth Z]
IPR023333Proteasome B-type subunitFamily
I [auth L],
W [auth Z]
IPR001353Proteasome, subunit alpha/betaFamily
I [auth L],
W [auth Z]
IPR000243Peptidase T1A, proteasome beta-subunitFamily
H [auth K],
V [auth Y]
IPR016050Proteasome beta-type subunit, conserved siteConserved Site
H [auth K],
V [auth Y]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
H [auth K],
V [auth Y]
IPR023333Proteasome B-type subunitFamily
H [auth K],
V [auth Y]
IPR001353Proteasome, subunit alpha/betaFamily
H [auth K],
V [auth Y]
IPR035206Proteasome subunit beta 2Family
G [auth J],
U [auth X]
IPR033811Proteasome subunit beta type-3Family
G [auth J],
U [auth X]
IPR016050Proteasome beta-type subunit, conserved siteConserved Site
G [auth J],
U [auth X]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
G [auth J],
U [auth X]
IPR023333Proteasome B-type subunitFamily
G [auth J],
U [auth X]
IPR001353Proteasome, subunit alpha/betaFamily
F [auth I],
T [auth W]
IPR024689Proteasome beta subunit, C-terminalDomain
F [auth I],
T [auth W]
IPR016050Proteasome beta-type subunit, conserved siteConserved Site
F [auth I],
T [auth W]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
F [auth I],
T [auth W]
IPR023333Proteasome B-type subunitFamily
F [auth I],
T [auth W]
IPR001353Proteasome, subunit alpha/betaFamily
F [auth I],
T [auth W]
IPR000243Peptidase T1A, proteasome beta-subunitFamily
E [auth H],
S [auth V]
IPR016050Proteasome beta-type subunit, conserved siteConserved Site
E [auth H],
S [auth V]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
E [auth H],
S [auth V]
IPR023333Proteasome B-type subunitFamily
E [auth H],
S [auth V]
IPR001353Proteasome, subunit alpha/betaFamily
E [auth H],
S [auth V]
IPR000243Peptidase T1A, proteasome beta-subunitFamily
D [auth G],
R [auth U]
IPR000426Proteasome alpha-subunit, N-terminal domainDomain
D [auth G],
R [auth U]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
D [auth G],
R [auth U]
IPR023332Proteasome alpha-type subunitFamily
D [auth G],
R [auth U]
IPR001353Proteasome, subunit alpha/betaFamily
C [auth F],
Q [auth T]
IPR000426Proteasome alpha-subunit, N-terminal domainDomain
C [auth F],
Q [auth T]
IPR035144Proteasome subunit alpha 1Family
C [auth F],
Q [auth T]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
C [auth F],
Q [auth T]
IPR023332Proteasome alpha-type subunitFamily
C [auth F],
Q [auth T]
IPR001353Proteasome, subunit alpha/betaFamily
B,
M [auth P]
IPR000426Proteasome alpha-subunit, N-terminal domainDomain
B,
M [auth P]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
B,
M [auth P]
IPR023332Proteasome alpha-type subunitFamily
B,
M [auth P]
IPR001353Proteasome, subunit alpha/betaFamily
CA [auth c]IPR016024Armadillo-type foldHomologous Superfamily
CA [auth c]IPR032430Proteasome activator Blm10, middle HEAT repeats regionDomain
CA [auth c]IPR011989Armadillo-like helicalHomologous Superfamily
CA [auth c]IPR055455Proteasome activator complex subunit 4-like, HEAT repeat-likeDomain
CA [auth c]IPR035309Proteasome activator complex subunit 4Family
CA [auth c]IPR021843Proteasome activator complex subunit 4, C-terminal domainDomain
BA [auth E],
P [auth S]
IPR000426Proteasome alpha-subunit, N-terminal domainDomain
BA [auth E],
P [auth S]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
BA [auth E],
P [auth S]
IPR033812Proteasome subunit alpha 5Family
BA [auth E],
P [auth S]
IPR023332Proteasome alpha-type subunitFamily
BA [auth E],
P [auth S]
IPR001353Proteasome, subunit alpha/betaFamily
AA [auth D],
O [auth R]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
AA [auth D],
O [auth R]
IPR000426Proteasome alpha-subunit, N-terminal domainDomain
AA [auth D],
O [auth R]
IPR023332Proteasome alpha-type subunitFamily
AA [auth D],
O [auth R]
IPR001353Proteasome, subunit alpha/betaFamily
N [auth Q],
Z [auth C]
IPR000426Proteasome alpha-subunit, N-terminal domainDomain
N [auth Q],
Z [auth C]
IPR016050Proteasome beta-type subunit, conserved siteConserved Site
N [auth Q],
Z [auth C]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
N [auth Q],
Z [auth C]
IPR023332Proteasome alpha-type subunitFamily
N [auth Q],
Z [auth C]
IPR001353Proteasome, subunit alpha/betaFamily
K [auth N],
Y [auth b]
IPR016050Proteasome beta-type subunit, conserved siteConserved Site
K [auth N],
Y [auth b]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
K [auth N],
Y [auth b]
IPR023333Proteasome B-type subunitFamily
K [auth N],
Y [auth b]
IPR016295Proteasome subunit beta 4Family
K [auth N],
Y [auth b]
IPR001353Proteasome, subunit alpha/betaFamily
J [auth M],
X [auth a]
IPR016050Proteasome beta-type subunit, conserved siteConserved Site
J [auth M],
X [auth a]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
J [auth M],
X [auth a]
IPR023333Proteasome B-type subunitFamily
J [auth M],
X [auth a]
IPR001353Proteasome, subunit alpha/betaFamily
A,
L [auth O]
IPR000426Proteasome alpha-subunit, N-terminal domainDomain
A,
L [auth O]
IPR029055Nucleophile aminohydrolases, N-terminalHomologous Superfamily
A,
L [auth O]
IPR034642Proteasome subunit alpha 6Family
A,
L [auth O]
IPR023332Proteasome alpha-type subunitFamily
A,
L [auth O]
IPR001353Proteasome, subunit alpha/betaFamily

Pharos: Disease Associations Pharos Homepage Annotation

ChainsDrug Target  Associated Disease
I [auth L],
W [auth Z]
P28074
H [auth K],
V [auth Y]
P49721
G [auth J],
U [auth X]
P49720
F [auth I],
T [auth W]
Q99436
E [auth H],
S [auth V]
P28072
D [auth G],
R [auth U]
P25788
C [auth F],
Q [auth T]
P25786
B,
M [auth P]
P25787
CA [auth c]Q14997
BA [auth E],
P [auth S]
P28066
AA [auth D],
O [auth R]
Q8TAA3
N [auth Q],
Z [auth C]
P25789
K [auth N],
Y [auth b]
P28070
J [auth M],
X [auth a]
P20618
A,
L [auth O]
P60900