KEGG   Talpa occidentalis (Iberian mole): 119257348
Entry
119257348         CDS       T07495                                 
Symbol
PSMD2
Name
(RefSeq) 26S proteasome non-ATPase regulatory subunit 2
  KO
K03028  26S proteasome regulatory subunit N1
Organism
tod  Talpa occidentalis (Iberian mole)
Pathway
tod03050  Proteasome
tod05010  Alzheimer disease
tod05012  Parkinson disease
tod05014  Amyotrophic lateral sclerosis
tod05016  Huntington disease
tod05017  Spinocerebellar ataxia
tod05020  Prion disease
tod05022  Pathways of neurodegeneration - multiple diseases
tod05169  Epstein-Barr virus infection
Brite
KEGG Orthology (KO) [BR:tod00001]
 09120 Genetic Information Processing
  09123 Folding, sorting and degradation
   03050 Proteasome
    119257348 (PSMD2)
 09160 Human Diseases
  09172 Infectious disease: viral
   05169 Epstein-Barr virus infection
    119257348 (PSMD2)
  09164 Neurodegenerative disease
   05010 Alzheimer disease
    119257348 (PSMD2)
   05012 Parkinson disease
    119257348 (PSMD2)
   05014 Amyotrophic lateral sclerosis
    119257348 (PSMD2)
   05016 Huntington disease
    119257348 (PSMD2)
   05017 Spinocerebellar ataxia
    119257348 (PSMD2)
   05020 Prion disease
    119257348 (PSMD2)
   05022 Pathways of neurodegeneration - multiple diseases
    119257348 (PSMD2)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03051 Proteasome [BR:tod03051]
    119257348 (PSMD2)
Proteasome [BR:tod03051]
 Eukaryotic proteasome
  Regulatory particles
   PA700 (19S proteasome)
    non-ATPase subunits
     119257348 (PSMD2)
SSDB
Motif
Pfam: RPN1_RPN2_N RPN1_C PC_rep THAP
Other DBs
NCBI-GeneID: 119257348
NCBI-ProteinID: XP_037381100
LinkDB
Position
Unknown
AA seq 908 aa
MEEGGRDKAPVQPQQPPASVPGGGDEKSSGKERREPGDKDKEQELSEEDKQLQDELEMLV
ERLGEKDTSLYRPALEELRRQIRSSTTSMTSVPKPLKFLRPHYGKLKEIYENMAPGENKR
FAADIISVLAMTMSGERECLKYRLVGSQEELASWGHEYVRHLAGEVAKEWQELDDAEKTQ
REPLLTLVKEIVPYNMAHNAEHEACDLLMEIEQVDMLEKDIDENAYAKVCLYLTSCVNYV
PEPENSALLRCALGVFRKFSRFPEALRLALMLNDMELVEDIFTSCKDVVVQKQMAFMLGR
HGVFLELSEDVEEYEDLTEIMSNVQLNSNFLALARELDIMEPKVPDDIYKTHLENNRFGG
SGSQVDSARMNLASSFVNGFVNAAFGQDKLLTDDGNKWLYKNKDHGMLSAAASLGMILLW
DVDGGLTQIDKYLYSSEDYIKSGALLACGIVNSGVRNECDPALALLSDYVLHNSNTMRLG
SIFGLGLAYAGSNREDVLTLLLPVMGDSKSSMEVAGVTALACGMIAVGSCNGDVTSTILQ
TIMEKSETELKDTYARWLPLGLGLNHLGKGEAIEAILAALEVVSEPFRSFANTLVDVCAY
AGSGNVLKVQQLLHICSEHFDSKEKEEDKDKKEKKDKDKKEAPADMGAHQGVAVLGIALI
AMGEEIGAEMALRTFGHLLRYGEPTLRRAVPLALALISVSNPRLNILDTLSKFSHDADPE
VSYNSIFAMGMVGSGTNNARLAAMLRQLAQYHAKDPNNLFMVRLAQGLTHLGKGTLTLCP
YHSDRQLMSQVAVAGLLTVLVSFLDVRNIILGKSHYVLYGLVAAMQPRMLVTFDEELRPL
PVSVRVGQAVDVVGQAGKPKTITGFQTHTTPVLLAHGERAELATEEFLPVTPILEGFVIL
RKNPNYDL
NT seq 2727 nt   +upstreamnt  +downstreamnt
atggaggaaggcggccgcgacaaggcgccggtgcaaccccagcagcccccagcctcggtc
ccgggcgggggagacgagaaatcgagcggcaaagagcggcgggagcccggggacaaggac
aaagagcaggagctgtctgaggaggacaaacaacttcaggatgaactggagatgctcgtg
gaacgactgggggagaaagacacatctctgtaccgaccagccctggaggaactgcgaagg
cagattcgttcttctacaacgtccatgacttcagttcccaagcctctcaaatttctgcgt
ccacactatggcaaactgaaggaaatctatgagaacatggccccaggagaaaataagcgt
tttgctgctgacatcatctctgttttggccatgaccatgagtggggagcgtgagtgtctc
aagtatcggctagtgggttcccaggaggaattggcatcgtggggtcatgagtatgtcagg
cacctggcaggagaagtggctaaggagtggcaggagctggatgatgcagagaagacacag
cgggagccactgctgaccctggtaaaggagattgtcccctacaacatggcccataatgct
gagcacgaggcatgtgatctactcatggaaattgagcaggtggatatgctggagaaggac
atcgatgagaatgcatatgcaaaggtctgcctctatctcaccagttgtgtgaattacgtg
cctgaacctgagaactctgccctactgcgttgtgccttgggtgtgttccgaaagttcagt
cgcttccctgaagctctgagattggcattgatgctcaatgacatggaactggtagaagac
atcttcacttcctgcaaggatgtggtagtacaaaaacagatggcattcatgctcggccgg
catggggtgtttcttgagctgagtgaagatgtggaggaatatgaggacctgacagagatc
atgtccaatgtgcagctcaatagcaacttcttggctttagctcgggagctggacatcatg
gagcccaaggtacctgatgacatctataaaacccatctagagaacaaccggtttgggggc
agtggctctcaagtggactctgcccgcatgaacctggcctcctcttttgtgaatggcttt
gtgaatgcagcctttggccaggataagctgctgactgatgatggcaacaaatggctttac
aagaataaggaccatggaatgttgagtgcagctgcatcccttggcatgattctgctgtgg
gatgtggatggtggcctcacccagattgacaaatacctgtactcatctgaggactacatc
aagtcaggagccctcctggcctgtggcatcgtgaactcaggggtccggaatgagtgtgac
ccagctctggcattgctctcagactatgttctccacaacagcaacactatgagacttggt
tccatctttggactaggactggcctatgctggctccaatcgcgaagatgttttaacactg
ctgctgcctgtgatgggagattccaagtctagtatggaggtggcaggtgtgacagctcta
gcctgtggaatgatagcagtgggatcctgcaatggagatgtcacttccactattcttcag
acgatcatggagaagtcagagactgagctcaaggatacttatgcgcgttggcttcctctt
ggactgggcctcaatcacctggggaagggtgaagccattgaggcaatcctggctgcactg
gaagttgtgtcagaaccattccgcagttttgccaacacactggtggatgtgtgtgcctat
gcaggctctgggaatgtactgaaggttcagcaactgctccacatttgtagtgaacacttt
gactccaaggaaaaggaggaagacaaagacaagaaagaaaagaaggacaaggacaagaag
gaagcccctgctgacatgggagcacatcagggagtggctgtgctggggattgcccttatt
gcaatgggagaggagataggtgcggagatggcactacgcacctttggccatctgctgaga
tatggggagcctacactccgacgggctgtgcctttagcactggctctgatctctgtttca
aatccacgactcaacatcctcgataccttaagcaaattctctcatgatgctgacccagaa
gtttcctacaactccatctttgccatgggcatggtgggcagtggtaccaataatgctcgc
ctggctgcgatgctgcgccagttagcccagtaccatgccaaggatcccaacaatcttttc
atggtgcgcttggcacagggcctgacacatttagggaagggcacacttaccctctgccca
taccatagcgaccggcagcttatgagtcaagtggctgtggctgggctgcttactgtgctt
gtctctttcctggatgtccgcaacatcatcctaggcaaatcacactatgtattatatggt
ttggtggctgccatgcagccccgcatgctggttacattcgatgaggaactgcggcccttg
ccagtgtctgtccgtgtgggccaggcggtggatgtggtgggccaggccggcaagcctaag
accatcacagggtttcagacacacacaacgccagtgctgttggctcacggggagcgggca
gaattggccactgaggagtttcttcctgtcactcccattttggaaggttttgttatcctt
cgaaagaaccccaactatgacctctaa

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