KEGG   Arvicola amphibius (Eurasian water vole): 119806685
Entry
119806685         CDS       T08327                                 
Symbol
Cul1
Name
(RefSeq) cullin-1
  KO
K03347  cullin 1
Organism
aamp  Arvicola amphibius (Eurasian water vole)
Pathway
aamp04110  Cell cycle
aamp04114  Oocyte meiosis
aamp04120  Ubiquitin mediated proteolysis
aamp04141  Protein processing in endoplasmic reticulum
aamp04310  Wnt signaling pathway
aamp04340  Hedgehog signaling pathway
aamp04350  TGF-beta signaling pathway
aamp04710  Circadian rhythm
aamp05170  Human immunodeficiency virus 1 infection
aamp05200  Pathways in cancer
Brite
KEGG Orthology (KO) [BR:aamp00001]
 09120 Genetic Information Processing
  09123 Folding, sorting and degradation
   04141 Protein processing in endoplasmic reticulum
    119806685 (Cul1)
   04120 Ubiquitin mediated proteolysis
    119806685 (Cul1)
 09130 Environmental Information Processing
  09132 Signal transduction
   04310 Wnt signaling pathway
    119806685 (Cul1)
   04340 Hedgehog signaling pathway
    119806685 (Cul1)
   04350 TGF-beta signaling pathway
    119806685 (Cul1)
 09140 Cellular Processes
  09143 Cell growth and death
   04110 Cell cycle
    119806685 (Cul1)
   04114 Oocyte meiosis
    119806685 (Cul1)
 09150 Organismal Systems
  09159 Environmental adaptation
   04710 Circadian rhythm
    119806685 (Cul1)
 09160 Human Diseases
  09161 Cancer: overview
   05200 Pathways in cancer
    119806685 (Cul1)
  09172 Infectious disease: viral
   05170 Human immunodeficiency virus 1 infection
    119806685 (Cul1)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04121 Ubiquitin system [BR:aamp04121]
    119806685 (Cul1)
Ubiquitin system [BR:aamp04121]
 Ubiquitin ligases (E3)
  Multi subunit type E3
   SCF complex
    Cullin
     119806685 (Cul1)
SSDB
Motif
Pfam: Cullin Cullin_Nedd8 IntS11_C
Other DBs
NCBI-GeneID: 119806685
NCBI-ProteinID: XP_038174489
LinkDB
Position
2:193749565..193815875
AA seq 776 aa
MSSSRSQNPHGLKQIGLDQIWDDLRAGIQQVYTRQSMAKSRYMELYTHVYNYCTSVHQSN
QARGAGVPPSKSKKGQTPGGAQFVGLELYKRLKEFLKNYLTNLLKDGEDLMDESVLKFYT
QQWEDYRFSSKVLNGICAYLNRHWVRRECDEGRKGIYEIYSLALVTWRDCLFRPLNKQVT
NAVLKLIEKERNGETINTRLISGVVQSYVELGLNEDDAFAKGPTLTVYKESFESQFLADT
ERFYTRESTEFLQQNPVTEYMKKAEARLLEEQRRVQVYLHESTQDELARKCEQVLIEKHL
EIFHTEFQNLLDADKNEDLGRMYNLVSRIQDGLGELKKLLETHIHNQGLAAIEKCGEAAL
NDPKMYVQTVLDVHKKYNALVMSAFNNDAGFVAALDKACGRFINNNAVTKMAQSSSKSPE
LLARYCDSLLKKSSKNPEEAELEDTLNQVMVVFKYIEDKDVFQKFYAKMLAKRLVHQNSA
SDDAEASMISKLKQACGFEYTSKLQRMFQDIGVSKDLNEQFKKHLTNSEPLDLDFSIQVL
SSGSWPFQQSCTFALPSELERSYQRFTAFYASRHSGRKLTWLYQLSKGELVTNCFKNRYT
LQASTFQMAILLQYNTEDAYTVQQLTDSTQIKMDILAQVLQILLKSKLLVLEDENANVDE
VELKPDTLIKLYLGYKNKKLRVNINVPMKTEQKQEQETTHKNIEEDRKLLIQAAIVRIMK
MRKVLKHQQLLGEVLTQLSSRFKPRVPVIKKCIDILIEKEYLERVDGEKDTYSYLA
NT seq 2331 nt   +upstreamnt  +downstreamnt
atgtcatcaagcaggagtcagaatccccatggactgaagcagatcgggcttgaccagatc
tgggatgacctcagagctgggattcagcaagtgtacaccagacaaagcatggcaaagtcc
agatacatggagctctacactcatgtttataactactgtactagtgtgcatcagtccaac
caagctcggggagctggagtccctccttccaagtcaaaaaagggccagactcctggggga
gctcagtttgttggcttggagttatacaagcgattgaaggagtttttgaagaattacttg
acaaatcttctcaaggatggagaagacctaatggatgagagtgtgctgaagttctacact
cagcagtgggaagattaccgattctccagcaaagtgctgaatggaatctgtgcctacctc
aatagacattgggttcgccgtgaatgtgacgaaggacgaaaaggaatatatgaaatctat
tcacttgcattggtgacatggagagattgtttgttcaggccattgaataaacaggtaaca
aatgctgttttaaaactgattgaaaaggaaagaaatggcgaaaccatcaacacaagacta
attagtggagttgtacaatcttatgtggaattgggactgaatgaagatgacgcatttgca
aagggccctacgttaacagtgtataaagaatcctttgaatctcaatttttggctgacaca
gagagattttataccagagaaagtactgaattcttgcagcagaacccagtaactgaatat
atgaaaaaggctgaggctcgtttgcttgaggagcagcggagagtgcaggtgtacctccat
gagagcacgcaagacgagttggcacggaaatgcgagcaggtcctcatcgagaaacacttg
gaaatattccacacagagttccagaatttgttggatgctgacaagaatgaagatttgggc
cgcatgtataatcttgtatctagaattcaggatggcctaggagaattgaaaaaacttcta
gagacacatattcataatcagggtcttgcagcaattgagaagtgtggagaagctgcttta
aatgacccgaagatgtatgtgcagaccgttctggatgttcataagaaatacaacgccctg
gtgatgtcggcattcaacaatgacgctggcttcgttgctgcacttgataaggcttgcggt
cgcttcataaacaacaatgcggttaccaaaatggcccagtcatctagtaaatcccctgag
ctgcttgctcggtactgtgactccttgttgaagaaaagttccaagaacccagaagaggca
gaactagaagacaccctcaatcaagtgatggtggtcttcaagtacatcgaggacaaagat
gtgtttcagaagttctatgcaaagatgcttgccaagagactggtgcatcagaacagtgct
agtgatgatgctgaagcaagcatgatctccaagttaaagcaagcttgtggttttgagtac
acctccaaacttcagcgaatgtttcaagacattggtgtaagcaaagatctgaatgagcag
ttcaaaaagcacctaacgaattcagaaccactggacttggacttcagcattcaggtcctc
agttccgggtcgtggcccttccagcagtcttgcacatttgccttgccgtcggagctggag
cgcagttatcagcgatttaccgctttctatgccagccggcacagtggcagaaaactgacg
tggttgtatcagctatccaaaggggaactagtcaccaattgcttcaaaaacagatacact
ttgcaggcatccacattccagatggcgatcctgctgcagtacaacacagaagacgcctac
accgtgcagcagctgacggacagcactcagattaaaatggacattttggcacaagtccta
cagattttactgaagtcaaagttgctggtcttggaagatgaaaatgcaaatgttgatgag
gtggaattgaagccagacaccctaataaagttataccttggttataaaaataagaaatta
agggttaatatcaatgtaccaatgaaaacggaacagaagcaggaacaagaaaccacacac
aaaaatatagaggaagaccgcaaactcctgattcaggcggccatcgtgagaatcatgaaa
atgaggaaggtcctgaaacaccagcagttacttggtgaagtcctcactcagctctcctcc
aggttcaaacctcgggtcccagtgatcaagaaatgcattgatattctcatcgaaaaggaa
tatttggagcgagtcgatggtgagaaggacacctacagttacttggcctaa

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