KEGG   Onychostoma macrolepis: 131534503
Entry
131534503         CDS       T09350                                 
Symbol
psma1
Name
(RefSeq) proteasome subunit alpha type-1
  KO
K02725  20S proteasome subunit alpha 6 [EC:3.4.25.1]
Organism
omc  Onychostoma macrolepis
Pathway
omc03050  Proteasome
Brite
KEGG Orthology (KO) [BR:omc00001]
 09120 Genetic Information Processing
  09123 Folding, sorting and degradation
   03050 Proteasome
    131534503 (psma1)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01002 Peptidases and inhibitors [BR:omc01002]
    131534503 (psma1)
  09182 Protein families: genetic information processing
   03051 Proteasome [BR:omc03051]
    131534503 (psma1)
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:omc04147]
    131534503 (psma1)
Enzymes [BR:omc01000]
 3. Hydrolases
  3.4  Acting on peptide bonds (peptidases)
   3.4.25  Threonine endopeptidases
    3.4.25.1  proteasome endopeptidase complex
     131534503 (psma1)
Peptidases and inhibitors [BR:omc01002]
 Threonine peptidases
  Family T1: proteasome family
   131534503 (psma1)
Proteasome [BR:omc03051]
 Eukaryotic proteasome
  Core particles (20S proteasome)
   alpha type subunits
    131534503 (psma1)
Exosome [BR:omc04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   131534503 (psma1)
SSDB
Motif
Pfam: Proteasome Proteasome_A_N
Other DBs
NCBI-GeneID: 131534503
NCBI-ProteinID: XP_058623389
LinkDB
Position
25:23977739..23983226
AA seq 329 aa
MKDPRCASLFLSYTVDEVVCTVGGAAARKSSRSARSVLDYFRLPEPRETNRAESLRAQRT
VAWFIAKMFRNQYDNDVTVWSPQGRIHQIEYAMEAVKQGSATVGLKSRSHAVLVALKRAQ
SELAAHQKKILHVDSHVGISIAGLTADARLLCNFMRQECLDSRFVFDRPLPVSRLVSLIG
SKTQIPTQRYGRRPYGVGLLIAGYDDMGPHIFQTCPSANYFDCKAMSIGARSQSARTYLE
RNMEAFLDSNLNDLVQHGLRALRETLPAEQDLTTKNVSVGIVGKDMELTIYDDDEVATFL
EGLEERPQRRVAPPADEAAPAVPDEPMEH
NT seq 990 nt   +upstreamnt  +downstreamnt
atgaaagacccgcgatgtgcttctttatttctctcctatacggttgatgaggttgtttgt
acagtgggtggcgctgcagcccggaagagcagtcggagcgcgcgctctgtgcttgattac
ttccgccttcctgaaccgagggaaactaatcgagctgaatcattgcgcgctcagcggacg
gtcgcctggtttatagcaaagatgtttcggaaccagtatgacaacgatgtgacggtgtgg
agtcctcagggccgcattcatcagatcgagtatgcgatggaggcagtgaagcagggctcg
gccaccgtcggactcaaatcacgctctcacgccgttctcgtggccctcaagagagctcag
tctgagctggccgcccatcagaagaagatcctgcatgtcgacagtcacgtgggcatctcc
atcgcaggactgacggccgacgccagactcctctgtaacttcatgcgtcaggagtgtctg
gactccaggtttgtgttcgatagacctctccctgtgtctcgactggtctcgctcatcgga
agcaagactcagattcccacgcagcgctacggcagacggccgtatggagtcgggctgctg
atcgcaggatatgatgacatggggccgcacatcttccagacgtgcccctcggccaattac
ttcgactgtaaagccatgtcgatcggcgctcgctcgcagtcggcccgcacgtacctggag
agaaacatggaggccttcctggactctaatctgaatgatctggtgcagcacggcctgcgt
gcgctgcgagagactcttcccgctgaacaggacctgaccacaaagaacgtgtccgtgggg
atcgtggggaaggacatggagctcaccatctacgacgacgacgaggtggcgacgttcctg
gagggtctggaggagaggccgcagagacgggtggccccgccggccgatgaagcggctcca
gctgttcccgatgagcccatggagcactaa

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