KEGG   Rhinopithecus roxellana (golden snub-nosed monkey): 104681064Help
Entry
104681064         CDS       T03989                                 

Gene name
SETDB1
Definition
(RefSeq) SET domain bifurcated 1
  KO
K11421  histone-lysine N-methyltransferase SETDB1 [EC:2.1.1.43]
Organism
rro  Rhinopithecus roxellana (golden snub-nosed monkey)
Pathway
rro00310  Lysine degradation
rro04550  Signaling pathways regulating pluripotency of stem cells
Brite
KEGG Orthology (KO) [BR:rro00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00310 Lysine degradation
    104681064 (SETDB1)
 09140 Cellular Processes
  09144 Cellular community - eukaryotes
   04550 Signaling pathways regulating pluripotency of stem cells
    104681064 (SETDB1)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03036 Chromosome and associated proteins [BR:rro03036]
    104681064 (SETDB1)
Enzymes [BR:rro01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.43  histone-lysine N-methyltransferase
     104681064 (SETDB1)
Chromosome and associated proteins [BR:rro03036]
 Eukaryotic Type
  Histone modification proteins
   HMTs (histone methyltransferases)
    HKMTs (histone lysine methyltransferases)
     104681064 (SETDB1)
  Heterochromatin formation proteins
   Other heterochromatin formation proteins
    104681064 (SETDB1)
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif
Pfam: SET DUF5604 Tudor_4 TUDOR_5 Pre-SET MBD DUF4537 53-BP1_Tudor Chromo
Motif
Other DBs
NCBI-GeneID: 104681064
NCBI-ProteinID: XP_010385540
UniProt: A0A2K6PKG3
LinkDB All DBs
Position
Un
AA seq 1292 aa AA seqDB search
MSSLPGCIGLDAATATVESEEIAELQQAVVEELGISMEELRHFIDEELEKMDCVQQRKKQ
LAELETWVIQKESEVAHVDQLFDDASRAVTNCESLVKDFYSKLGLQYRDSSSEDESSRPT
EIIEIPDEDDDVLSIDSGDAGSRTPKDQKLREAMAALRKSAQDVQKFMDAVNKKSSSQDL
HKGTLSQMSGELSKDGDLIVSMRILGKKRTKTWHKGTLIAIQTVGPGKKYKVKFDNKGKS
LLSGNHIAYDYHPPADKLFVGSRVVAKYKDGNQVWLYAGIVAETPNVKNKLRFLIFFDDG
YASYVTQSELYPICRPLKKTWEDIEDISCRDFIEEYVTAYPNRPMVLLKSGQLIKTEWEG
TWWKSRVEEVDGSLVRILFLDDKRCEWIYRGSTRLEPMFSMKTSSASALEKKQGQLRTRP
NMGAVRSKGPVVQYTQDLTSTATQFKPVEPPQPTAPPAPPFPPAPPLSPQAGDSESLESQ
LAQSRKQVAKKSTSFRPGSVGSGHSSPTSPALSENVSGGKPGINQTYRSPLGSTASAPAP
SAPPAPPAPPAFHGMLERAPAEPSYRAPMEKLFYLPHVCSYTCLSRVRPMRNEQYRGKNP
LLVPLLYDFRRMTARRRVNRKMGFHVIYKTPCGLCLRTMQEIERYLFETGCDFLFLEMFC
LDPYVLVDRKFQPYKPFYYILDITYGKEDVPLSCVNEIDTTPPPQVAYSKERIPGKGVFI
NTGPEFLVGCDCKDGCRDKSKCACHQLTIQATACTPGGQINPNSGYQYKRLEECLPTGVY
ECNKRCKCDPNMCTNRLVQHGLQVRLQLFKTQNKGWGIRCLDDIAKGSFVCIYAGKILTD
DFADKEGLEMGDEYFANLDHIESVENFKEGYESDAPCSSDSSGVDLKDQEDGNSGTEDPE
ESNDDSSDDNFCKDEDFSTSSVWRSYATRRQTRGQKENGLSETTSKDSHPPDLGPLHIPV
PPSIPVGGCNPPSSEETPKNKVASWLSCNSVSEGGFADSDSHSSFKTNEGGEGRAGGSRM
EAEKASTSGLGIKDEGDIKQAKKEDPDDRNKMSVVTESSRNYGYNPSPVKPEGLRRPPSK
TSMHQSRRLMASAQSNPDDVLTLSSSTESEGESGTSRKPTAGQTSATAVDSDDIQTISSG
SEGDDFEDKKNMTGPMKRQVAVKSTRGFALKSTHGIAIKSTNMASVDKGESAPVRKNTRQ
FYDGEESCYIIDAKLEGNLGRYLNHSCSPNLFVQNVFVDTHDLRFPWVAFFASKRIRAGT
ELTWDYNYEVGSVEGKELLCCCGAIECRGRLL
NT seq 3879 nt NT seq  +upstreamnt  +downstreamnt
atgtcttcccttcctgggtgcattggtttggatgcagcaacagctacagtggagtctgaa
gagatagcagagctgcaacaggcagtggttgaggaactgggtatctctatggaggaactt
cggcatttcatcgatgaggaactggagaagatggattgtgtacagcagcgcaagaagcag
ctagcagagttagagacatgggtaatacagaaagaatctgaggtggctcacgttgaccag
ctatttgatgatgcatccagggcagtgactaattgtgagtctttggtgaaggacttctac
tccaagctgggactacaataccgggacagtagctctgaggacgaatcttcccggcctaca
gaaataattgagattcctgatgaagatgatgatgtcctcagtattgattcaggtgatgct
gggagccgaactccaaaagaccagaagctccgtgaagctatggctgccttaagaaagtca
gctcaagatgttcagaagttcatggatgctgtcaacaagaagagcagttcccaggatctg
cataaaggaaccttgagtcagatgtctggagaactaagcaaagatggtgacctgatagtc
agcatgcgaattctgggcaagaagagaactaagacatggcacaaaggcacccttattgcc
atccagacagttgggccggggaagaaatacaaggtgaaatttgacaacaaaggaaagagt
ctactgtcggggaaccatattgcctatgattaccaccctcctgctgacaagctgtttgtg
ggcagtcgggtggtcgccaaatacaaagatgggaatcaggtctggctctatgctggcatt
gtagctgagacaccaaacgtcaaaaacaagctcaggtttctcattttctttgatgatggc
tatgcttcctatgtcacacagtctgaactgtatcccatttgccggccactgaaaaagact
tgggaggacatagaagacatctcctgccgtgacttcatagaggagtatgtaactgcctac
cccaaccgccccatggtactgctcaagagtggccagcttatcaagactgagtgggaaggc
acatggtggaagtcccgagttgaggaggtggatggcagcctagtcaggatcctcttcctg
gatgacaaaagatgtgagtggatctatcgaggctctacacggctggagcccatgttcagc
atgaaaacatcctcagcctctgcactagagaagaagcaaggacagctcaggacacgtcca
aatatgggtgctgtgaggagcaaaggccctgttgtccagtacacacaggatctgaccagt
actgcaacccagttcaagccagtggaacccccacagcctacagctccacctgccccacct
ttcccacctgctccacctctgtctccccaagcaggtgacagtgaaagcttggaaagccag
cttgcccagtcacggaagcaggtagccaaaaagagcacatccttccgaccaggatctgtg
ggctctggtcattcctcccctacgtctcctgcactcagtgaaaatgtctctggtgggaaa
cctgggatcaaccagacgtatagatcacctttaggctccacagcctctgccccagcaccc
tcagcacccccagcccctccagcacccccagccttccatggcatgctggagcgggcccca
gcagagccctcctaccgtgctcccatggagaagcttttctacttacctcatgtctgcagc
tatacctgtctgtctcgagtcagacctatgaggaatgagcagtaccggggcaagaaccct
ctgctggtcccattactatatgacttccggcggatgacagcccggcgtcgagttaaccgc
aagatgggctttcatgttatctataagacaccttgtggtctttgccttcggacaatgcag
gagatcgaacgctaccttttcgagactggctgtgacttcctcttcctggagatgttctgt
ttggatccatatgttcttgtggaccgaaagtttcagccctataagcctttttactatatt
ttggacatcacctatgggaaggaagatgttcccctgtcctgtgtcaatgagattgacaca
acccctccaccccaggtggcctacagcaaggaacgtatcccgggcaagggtgttttcatt
aacacaggccctgaatttctggttggctgtgactgcaaggatgggtgtcgggacaagtcc
aagtgtgcctgccatcaactaactatccaggctacagcctgtaccccaggaggccaaatt
aaccctaactctggctaccagtacaagagactagaagagtgtctacccacaggggtatat
gagtgtaacaaacgctgcaaatgtgacccaaacatgtgcacaaatcggttggtacaacat
ggactacaagttcggctacagctattcaagacacagaacaagggctggggtatccgctgc
ttggatgacattgccaaaggctcttttgtctgtatttatgcaggcaaaatcctgacagat
gactttgcagacaaggagggtctggaaatgggtgatgagtactttgcaaatctggaccat
atcgagagcgtggagaacttcaaagaaggatatgagagtgatgccccctgttcctctgac
agcagtggtgtagacttgaaggaccaggaagatggcaacagcggtacagaggaccctgaa
gagtccaatgatgatagctcagacgataacttctgtaaggatgaggacttcagcaccagt
tcagtgtggcggagctatgctacccggagacagacccggggccaaaaagagaacggactc
tctgagacaacttccaaggactcccaccccccagatcttggacccctacatattcctgtt
cctccctcgatccctgtaggtggctgcaatccaccttcctctgaagagacacccaagaac
aaggtggcctcatggttgagctgcaatagtgtcagtgaaggtggttttgctgactctgat
agccattcatcctttaagactaatgaaggtggggagggccgggctgggggaagccgaatg
gaggctgaaaaggcctccacctcaggactaggcatcaaggatgagggagacatcaagcaa
gccaagaaagaggaccctgacgaccgaaacaagatgtcagtagttactgaaagctctcga
aactacggttacaatccttctcccgtgaagcctgaaggacttcgccgcccacctagtaag
actagtatgcatcaaagccgacgactcatggcttctgctcagtccaaccctgatgatgtc
ctgacactgtccagcagcacagaaagtgagggggaaagtgggaccagccgaaagcccact
gctggtcagacttcggctacagcggttgacagtgatgatatccagaccatctcctctggc
tctgaaggggatgactttgaggacaagaagaacatgactggtccaatgaagcgtcaagtg
gcagtaaagtcaacccgaggctttgctcttaaatcaacccatgggattgcaattaaatca
accaacatggcctctgtggacaagggggagagtgcacctgttcgtaagaacacacgccaa
ttctacgatggcgaggagtcttgctacatcatcgatgccaagcttgaaggcaacctgggc
cgctacctcaaccacagttgcagccccaacctgtttgtccagaatgtcttcgtggatacc
catgatcttcgcttcccctgggtggccttctttgccagcaaaagaatccgggctgggaca
gaacttacttgggactacaactacgaggtgggcagtgtggaaggcaaggagctgctctgt
tgctgtggggccattgaatgcagaggacgtcttctttag

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