Equus asinus (ass): 106827890
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Entry
106827890 CDS
T04645
Symbol
PSMD1
Name
(RefSeq) 26S proteasome non-ATPase regulatory subunit 1 isoform X1
KO
K03032
26S proteasome regulatory subunit N2
Organism
eai
Equus asinus (ass)
Pathway
eai03050
Proteasome
eai05010
Alzheimer disease
eai05012
Parkinson disease
eai05014
Amyotrophic lateral sclerosis
eai05016
Huntington disease
eai05017
Spinocerebellar ataxia
eai05020
Prion disease
eai05022
Pathways of neurodegeneration - multiple diseases
eai05169
Epstein-Barr virus infection
Brite
KEGG Orthology (KO) [BR:
eai00001
]
09120 Genetic Information Processing
09123 Folding, sorting and degradation
03050 Proteasome
106827890 (PSMD1)
09160 Human Diseases
09172 Infectious disease: viral
05169 Epstein-Barr virus infection
106827890 (PSMD1)
09164 Neurodegenerative disease
05010 Alzheimer disease
106827890 (PSMD1)
05012 Parkinson disease
106827890 (PSMD1)
05014 Amyotrophic lateral sclerosis
106827890 (PSMD1)
05016 Huntington disease
106827890 (PSMD1)
05017 Spinocerebellar ataxia
106827890 (PSMD1)
05020 Prion disease
106827890 (PSMD1)
05022 Pathways of neurodegeneration - multiple diseases
106827890 (PSMD1)
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03051 Proteasome [BR:
eai03051
]
106827890 (PSMD1)
Proteasome [BR:
eai03051
]
Eukaryotic proteasome
Regulatory particles
PA700 (19S proteasome)
non-ATPase subunits
106827890 (PSMD1)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
RPN2_N
RPN2_C
PC_rep
HEAT_2
HEAT_EZ
HEAT
Tim54
Motif
Other DBs
NCBI-GeneID:
106827890
NCBI-ProteinID:
XP_014691538
UniProt:
A0A8C4LRZ9
LinkDB
All DBs
Position
19:complement(9858592..9955930)
Genome browser
AA seq
986 aa
AA seq
DB search
MWTSVSSPAEALTSRRVRENNGALRAPFCAGWGGAEDAAGIISLLDEEEPQLKEFALHKL
NAVVNDFWAEISESVDKIEVLYEDEGFRSRQFAALVASKVFYHLGAFEESLNYALGAGDL
FNVNDNSEYVETIIAKCIDHYTKQCVENADLPEGEKKPIDQRLEGIVNKMFQRCLDDHKY
KQAIGIALETRRLDVFEKTILESNDVPGMLAYSLKLCMSLMQNKQFRNKVLRVLVKIYMN
LEKPDFINVCQCLIFLDDPQAVSDILEKLVKEDNLLMAYQICFDLYESASQQFLSSVIQN
LRTVGTPIASVPGSTNTGTVPGSEKDSDSMETEEKTGGVVVGKTPEVSPEPKDQTLKMIK
ILSGEMAIELHLQFLIRNNNTDLMILKNTKDAVRNSVCHTATVIANSFMHCGTTSDQFLR
DNLEWLARATNWAKFTATASLGVIHKGHEKEALQLMATYLPKDTSPGSAYQEGGGLYALG
LIHANHGGDIIDYLLNQLKNASNDIVRHGGSLGLGLAAMGTARQDVYDLLKTNLYQDDAV
TGEAAGLALGLVMLGSKNAQAIEDMVGYAQETQHEKILRGLAVGIALVMYGRMEEADALI
ESLCRDKDPILRRSGMYTVAMAYCGSGNNKAIRRLLHVAVSDVNDDVRRAAVESLGFILF
RTPEQCPSVVSLLSESYNPHVRYGAAMALGICCAGTGNKEAINLLEPMTNDPVNYVRQGA
LIASALIMIQQTEITCPKVNQFRQLYSKVINDKHDDVMAKFGAILAQGILDAGGHNVTIS
LQSRTGHTHMPSVVGVLVFTQFWFWFPLSHFLSLAYTPTCVIGLNKDLKMPKVQYKSNCK
PSTFAYPAPLEVPKEKEKEKVSTAVLSITAKAKKKEKEKEKKEEEKMEVDEAEKKEEKEK
KKEPEPNFQLLDNPARVMPAQLKVLTMPETCRYQPFKPLSIGGIIILKDTSEDIEELVEP
VAAHGPKIEEEEQEPEPPEPFEYIDD
NT seq
2961 nt
NT seq
+upstream
nt +downstream
nt
atgtggacgagtgtctcctcccccgcggaggcgctgacctctaggagggttagagaaaac
aatggagctctccgtgcccctttctgcgcgggctggggcggcgcggaagacgcggctgga
attatttctcttctggatgaagaagaaccacagcttaaggaatttgcactacacaaattg
aatgcagttgtcaatgacttctgggcagaaatttctgagtctgtagataaaatagaagtt
ttgtatgaagatgaaggtttccggagtcggcagtttgcggccttagtggcatctaaagta
ttttatcacctgggggcttttgaggagtctctgaattatgcacttggagcaggtgacctc
ttcaatgtcaatgataactctgaatatgtggagactattatagcaaaatgcattgatcac
tacaccaaacaatgtgtggaaaatgcagatttgcccgaaggagaaaaaaaaccaattgac
cagagattggaaggcattgtgaataaaatgttccagcgatgtctagatgatcacaagtat
aagcaagctatcggcattgctctggagacacgaaggctggatgtctttgagaagactata
ctggagtcgaatgatgtcccaggaatgctagcttatagcctcaagctctgcatgtcttta
atgcagaataaacagtttcggaataaagtactaagagtcctagttaaaatctacatgaac
ttggagaaacccgatttcatcaatgtttgccagtgcttaattttcttagatgatccccag
gccgtgagtgatatcttagaaaagctggtaaaagaagacaacctcctgatggcttatcag
atttgttttgatctgtatgaaagtgctagccagcagtttttgtcatctgtaatccaaaat
cttcgaactgttggcacccctattgcttctgtgcctggatccaccaatacgggtactgtt
ccgggatcagagaaagacagtgactccatggaaacagaagaaaagacaggtggtgtagtc
gtaggaaagacaccagaagtgagtccagagcccaaggaccagactttgaaaatgattaaa
attttaagtggtgaaatggctattgagttacatctacagtttttaatacgaaacaataac
acagatctcatgattctaaaaaacacaaaggatgcagtacggaattctgtatgtcataca
gcaaccgttatagcaaactcttttatgcactgtgggactaccagtgaccagtttcttaga
gataacttggaatggttggccagagccactaactgggcaaaatttacagctacagccagt
ttgggtgtaattcataagggtcatgaaaaggaagcattacagttaatggcaacatatctt
cctaaggacacctctccaggatcagcctatcaggaaggtggtggtctctatgcgttaggt
cttattcatgccaatcatggtggtgatataattgactatctgcttaaccagcttaagaat
gccagcaatgatatcgttcgacacggtggcagtctggggcttggtttggctgccatgggg
acggcacgccaggatgtgtatgatttgctaaaaacaaacctttaccaagatgatgctgtg
acaggggaagcagctggcctggccctaggtttagttatgttgggctctaaaaatgcccag
gctattgaagacatggttggctatgcacaggaaactcaacatgagaagattctgcgtggc
cttgcagttggcattgcgttagtaatgtacgggaggatggaagaggctgatgctctcatt
gaatctctctgccgtgataaggacccaattcttcgacggtctggaatgtatactgttgcc
atggcttattgtggctcaggtaacaacaaagctattcgacgtctgctgcatgttgctgta
agcgacgttaatgatgatgttaggagggcagcagtagaatcacttgggttcattctgttc
agaacccctgaacagtgccccagcgtggtttcattgttgtcggagagttacaatcctcac
gtgcggtatggagctgcaatggccctgggcatctgctgtgctggtacaggaaacaaggaa
gcaattaatttgctagaaccaatgacaaatgaccctgtgaactatgtgaggcaaggagct
ctcatagcttcagctctcatcatgatccagcagactgaaatcacttgtccaaaggtgaat
cagttcagacagctgtattccaaagtcatcaatgataaacatgatgatgtcatggccaag
tttggcgctatactggcccagggcatactagatgcaggtggtcataatgtcacaatctcc
ttgcagtcgaggactgggcacacccatatgccttctgtggttggcgtccttgtctttacc
cagttctggttctggtttcctctttcacatttcctgtcgttggcttatacccctacctgt
gtcattggtcttaacaaggacttaaagatgccgaaagttcagtataaatcaaactgtaaa
ccatccacatttgcatatcctgcccccctggaagtaccaaaagaaaaggaaaaggaaaag
gtttccactgctgtgttatctattactgccaaggctaaaaagaaggaaaaagaaaaagaa
aaaaaggaggaggagaaaatggaagtggatgaggcagagaaaaaggaagaaaaagagaag
aaaaaagaacctgagccaaacttccagttactggataacccagcccgagttatgcctgct
cagcttaaggtcctgaccatgccggagacctgtagataccagcctttcaaaccactctcc
attggaggcatcatcattctgaaggataccagtgaagacattgaagagctggtggaaccc
gtggcagcccatggcccgaaaattgaggaggaggaacaagagccagaacccccagaacca
tttgagtatattgatgattaa
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