Ailuropoda melanoleuca (giant panda): 100466596
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Entry
100466596 CDS
T01329
Symbol
CUL1
Name
(RefSeq) cullin-1 isoform X1
KO
K03347
cullin 1
Organism
aml
Ailuropoda melanoleuca (giant panda)
Pathway
aml04110
Cell cycle
aml04114
Oocyte meiosis
aml04120
Ubiquitin mediated proteolysis
aml04141
Protein processing in endoplasmic reticulum
aml04310
Wnt signaling pathway
aml04340
Hedgehog signaling pathway
aml04350
TGF-beta signaling pathway
aml04710
Circadian rhythm
aml05170
Human immunodeficiency virus 1 infection
aml05200
Pathways in cancer
Brite
KEGG Orthology (KO) [BR:
aml00001
]
09120 Genetic Information Processing
09123 Folding, sorting and degradation
04141 Protein processing in endoplasmic reticulum
100466596 (CUL1)
04120 Ubiquitin mediated proteolysis
100466596 (CUL1)
09130 Environmental Information Processing
09132 Signal transduction
04310 Wnt signaling pathway
100466596 (CUL1)
04340 Hedgehog signaling pathway
100466596 (CUL1)
04350 TGF-beta signaling pathway
100466596 (CUL1)
09140 Cellular Processes
09143 Cell growth and death
04110 Cell cycle
100466596 (CUL1)
04114 Oocyte meiosis
100466596 (CUL1)
09150 Organismal Systems
09159 Environmental adaptation
04710 Circadian rhythm
100466596 (CUL1)
09160 Human Diseases
09161 Cancer: overview
05200 Pathways in cancer
100466596 (CUL1)
09172 Infectious disease: viral
05170 Human immunodeficiency virus 1 infection
100466596 (CUL1)
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04121 Ubiquitin system [BR:
aml04121
]
100466596 (CUL1)
Ubiquitin system [BR:
aml04121
]
Ubiquitin ligases (E3)
Multi subunit type E3
SCF complex
Cullin
100466596 (CUL1)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Cullin
Cullin_Nedd8
IntS11_C
Motif
Other DBs
NCBI-GeneID:
100466596
NCBI-ProteinID:
XP_002923816
Ensembl:
ENSAMEG00000002865
UniProt:
D2HN20
LinkDB
All DBs
Position
1:205291262..205357417
Genome browser
AA seq
776 aa
AA seq
DB search
MSSNRSQNPHGLKQIGLDQIWDDLRAGIQQVYTRQSMAKSRYMELYTHVYNYCTSVHQSN
QARGAGVPPSKSKKGQTPGGAQFVGLELYKRLKEFLKNYLTNLLKDGEDLMDESVLKFYT
QQWEDYRFSSKVLNGICAYLNRHWVRRECDEGRKGIYEIYSLALVTWRDCLFRPLNKQVT
NAVLKLIEKERNGETINTRLISGVVQSYVELGLNEDDAFAKGPTLTVYKESFESQFLADT
ERFYTRESTEFLQQNPVTEYMKKAEARLLEEQRRVQVYLHESTQDELARKCEQVLIEKHL
EIFHTEFQNLLDADKNEDLGRMYNLVSRIQDGLGELKKLLETHIHNQGLAAIEKCGEAAL
NDPKMYVQTVLDVHKKYNALVMSAFNNDAGFVAALDKACGRFINNNAVTKMAQSSSKSPE
LLARYCDSLLKKSSKNPEEAELEDTLNQVMVVFKYIEDKDVFQKFYAKMLAKRLVHQNSA
SDDAEASMISKLKQACGFEYTSKLQRMFQDIGVSKDLNEQFKKHLTNSEPLDLDFSIQVL
SSGSWPFQQSCTFALPSELERSYQRFTAFYASRHSGRKLTWLYQLSKGELVTNCFKNRYT
LQASTFQMAILLQYNTEDAYAVQQLTDSTQIKMDILAQVLQILLKSKLLVLEDENANVDE
VELKPDTLIKLYLGYKNKKLRVNINVPMKTEQKQEQETTHKNIEEDRKLLIQAAIVRIMK
MRKVLKHQQLLGEVLTQLSSRFKPRVPVIKKCIDILIEKEYLERVDGEKDTYSYLA
NT seq
2331 nt
NT seq
+upstream
nt +downstream
nt
atgtcatcaaacaggagtcagaatcctcatggactgaagcagattggccttgaccagata
tgggacgacctcagagctggaatccagcaagtatataccagacaaagtatggcgaaatcc
agatacatggaactctacactcatgtttataactactgcacgagtgttcatcagtcaaac
caagcccgaggggctggcgtccctccttccaaatcgaaaaagggacagacgcctggggga
gctcagtttgttggcttggaattatacaaacgacttaaagaatttttgaagaattacttg
acaaatcttcttaaggatggagaagatttgatggatgagagtgtcctgaagttctacact
caacagtgggaggattatcgattttcaagcaaagtgctgaatggaatttgtgcctacctc
aatagacattgggttcgccgtgaatgtgacgagggacgaaaaggaatctatgagatctat
tctcttgcattggtgacttggagagattgtctgttcaggccactgaataaacaggtaacg
aatgctgttttaaaactgattgaaaaggaaagaaacggtgaaaccatcaatacaagactg
atcagtggagttgtacagtcttatgtggaattggggctgaatgaagacgatgcatttgcc
aagggccctacgctgacagtgtataaagagtcctttgaatctcagtttttggctgacacg
gagagattctataccagggagagcactgaattcttgcagcagaacccagttactgagtat
atgaaaaaggcagaggcccgtctgctggaggaacagcggagagtccaggtttaccttcat
gaaagcacacaggacgagctagcgaggaagtgtgagcaggtgctcattgaaaaacacttg
gaaattttccacacagaattccagaatttgttggatgctgacaaaaatgaagatttgggt
cgcatgtataatcttgtatctagaatccaggatggcctaggagaattgaaaaaacttcta
gagacacacattcataatcagggtcttgcagcaattgaaaagtgtggagaagctgcttta
aatgaccccaaaatgtatgtacagacagtgttggatgttcataaaaaatacaacgccctg
gtgatgtcggcattcaacaacgacgctggtttcgtggccgcgctcgacaaggcctgtggt
cgtttcattaacaacaacgctgttaccaaaatggcccagtcgtccagtaaatcccccgag
ttgctggctcgatactgcgactccttgttgaagaaaagttccaagaacccagaagaagca
gagctagaagacacgcttaaccaagtgatggtggtcttcaagtacatagaggataaagac
gtgtttcagaaattctacgcgaagatgctggccaagagactcgtgcatcagaacagtgcc
agcgatgacgccgaagcaagcatgatctctaaattaaagcaagcatgtggttttgaatat
acctctaaactccagcggatgtttcaagacatcggcgtgagcaaagatttgaatgagcaa
ttcaaaaagcacctgacgaattcagaaccgctggacttggatttcagtattcaggtgctg
agctccgggtcgtggcccttccagcagtcttgcacgtttgccttgccgtcggagttggag
cgcagttaccagcggttcacggccttttacgctagtcgtcacagcggcagaaaactgact
tggttgtatcaactgtctaaaggagaattggtaaccaactgcttcaaaaatagatacact
ctgcaggcgtccaccttccagatggcgatcctgcttcagtacaacacggaggacgcttac
gctgtgcagcagctgaccgacagcacgcagatcaaaatggacattttggcacaagtccta
cagattttattgaagtcaaagttactggtcctggaagacgaaaatgcgaatgttgatgag
gtggaactgaagccagataccttaataaaattatatcttggttataaaaataagaagtta
agagttaacatcaatgtgccgatgaaaaccgaacagaagcaggagcaagaaaccacacac
aaaaatattgaggaggaccgcaaactgctgatccaggcggccatcgtgcggatcatgaag
atgcgcaaggtcctgaagcaccagcagctgctcggggaagtgctcactcagctgtcctcc
aggttcaaaccgcgggtccccgtcatcaagaaatgcattgacattctgatcgagaaagaa
tatttggagcgagtcgatggtgaaaaggacacctacagttacttggcttaa
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