KEGG   Rhinolophus sinicus (Chinese rufous horseshoe bat): 109451617Help
Entry
109451617         CDS       T04863                                 

Gene name
SETDB1
Definition
(RefSeq) LOW QUALITY PROTEIN: histone-lysine N-methyltransferase SETDB1
  KO
K11421  histone-lysine N-methyltransferase SETDB1 [EC:2.1.1.43]
Organism
rss  Rhinolophus sinicus (Chinese rufous horseshoe bat)
Pathway
rss00310  Lysine degradation
rss04550  Signaling pathways regulating pluripotency of stem cells
Brite
KEGG Orthology (KO) [BR:rss00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00310 Lysine degradation
    109451617 (SETDB1)
 09140 Cellular Processes
  09144 Cellular community - eukaryotes
   04550 Signaling pathways regulating pluripotency of stem cells
    109451617 (SETDB1)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03036 Chromosome and associated proteins [BR:rss03036]
    109451617 (SETDB1)
Enzymes [BR:rss01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.43  histone-lysine N-methyltransferase
     109451617 (SETDB1)
Chromosome and associated proteins [BR:rss03036]
 Eukaryotic Type
  Histone modification proteins
   HMTs (histone methyltransferases)
    HKMTs (histone lysine methyltransferases)
     109451617 (SETDB1)
  Heterochromatin formation proteins
   Other heterochromatin formation proteins
    109451617 (SETDB1)
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif
Pfam: DUF5604 SET Tudor_4 TUDOR_5 Pre-SET MBD DUF4537 Chromo
Motif
Other DBs
NCBI-GeneID: 109451617
NCBI-ProteinID: XP_019595548
LinkDB All DBs
Position
Unknown
AA seq 1320 aa AA seqDB search
MEDNSMSSLPGCLGLDAATAAVESEEIAELQQAVVEELGISMEELRQFIDEELEKMDCVQ
QRKKQLAELETWVIQKESEVAHVDQLFDDASRAVTNCESLVKDFYSKLGLQYRDSSSEDE
ASRPTEIIEIPDEDDDVLSIDSGDAGSRTPKDQKLREAMAALRKSAQDVQKFMDAVNKKS
SSQELHKGTLSQIPGELSKDGDLIVSMRILGKKRTKTWHKGTLIAIQTVGPGKKYKVKFD
NKGKSLLSGNHIAYDYHPPADKLYVGSRVVAKYKDGNQVWLYAGIVAETPNVKNKLRFLI
FFDDGYASYVTQSELYPICRPLKKTWEDIEDISCRDFIEEYITAYPNRPMVLLKSGQLIK
TEWEGTWWKSRVEEVDGSLVRILFLDDKRCEWIYRGSTRLEPMFSMKTSSASTLEKKQGG
QLRTRPNMGAVRSKGPVVQYTQDLTSTGTQFKPMELPQPTAPXPATPTPPAPPAPPLSPQ
AGDTESLESQLAQARKQVAKKSTSFRPGSVGSGHSSPTSPALSENVPGGKPGINQTYRSP
LGSTTAAPAPLAPPAPPAPPVPPAPSAPPALPALPAFPAFHGMLERAPAEPSYRAPMEKL
FYLPHVCSYTCLSRVRPIRSEQYRGKNPLLVPLLYDFRRMTARRRVNRKMGFHVIYKTPC
GLCLRTMQEIERYLFETGCDFLFLEMFCLDPYVLVDRKFQPFKPFYYILDITYGKEDVPL
SCVNEIDTTPPPQVAYSKERIPGKGVFINTGPEFLVGCDCKDGCRDKSKCACHQLTIQAT
ACTPGGQTNPNSGYQYKRLEECLPTGVYECNKRCNCDPNMCTNRLVQHGLQVRLQLFKTQ
NKGWGIRCLDDIAKGSFVCIYAGKILTDDFADKEGLEMGDEYFANLDHIESVENFKEGYE
SDAPCSSDSSGVDLKDQEDGNSGTEDPEESNDDSSDDNFCKDEDFSTSSVWRSYATRRQT
RGQKENGLSETASKDSRPPDLGPPHLPVPLAMPLGGCNPPSSEETPKNKVASWLSCNSVS
EGGFADSDSRSSYKTSEGGDGRAGGGRGEAEKASTSGLGLKEEGDIKPAKKEDPDDRPKM
SMVTESSRNYGYNPSPMKMEGLRRPPSKTSMHQSRRLVASAQSHPDDVLTLSSSTESEGE
SGTSRKPTAGQTSATAVDSDDIQTISSGSEGDDFEDKKNMSGPMKRQVAVKSTRGFALKS
THGIAIKSTNMASAEKGESAPIRKNTRQFYDGEESCYIIDAKLEGNLGRYLNHSCSPNLF
VQNVFVDTHDLRFPWVAFFASKRIRAGTELTWDYNYEVGSVEGKELLCCCGAIECRGRLL
NT seq 3963 nt NT seq  +upstreamnt  +downstreamnt
atggaggacaacagcatgtcctccctccctgggtgccttgggttggatgcagccacagct
gcggtggagtccgaagagattgcagagctgcagcaagcagtggttgaggagctaggcatc
tcaatggaagaactgcggcagttcatcgatgaagaactggaaaagatggactgtgtacag
cagcgcaagaagcagctggcagagttggagacgtgggtcatacagaaggaatctgaggtg
gcccatgttgaccagctctttgatgatgcatccagggcagtgactaattgtgagtctttg
gtgaaggacttttactccaaactgggactacagtaccgggacagtagctccgaggacgaa
gcttcccggcccacagaaataattgagattcctgatgaagatgatgatgtcctcagtatt
gattcaggtgacgctgggagcagaactccaaaagaccagaagctccgtgaagcgatggct
gccttacggaagtcggctcaggatgtgcagaagttcatggatgctgtgaacaagaagagc
agttcccaggagctccataaagggactttgagtcagatacccggagaactaagcaaagac
ggggacctgatagtcagcatgcgcattctgggcaagaagagaactaagacgtggcacaaa
ggaaccctcattgccatccagacggtcgggccaggaaagaagtacaaggtgaaatttgac
aacaagggaaagagtctgctgtcggggaaccatattgcctatgattaccaccctcctgct
gacaagctgtatgtgggcagtcgagtggtggccaagtacaaagacgggaatcaggtctgg
ctctatgctggcattgtagctgagacaccaaacgtcaaaaacaagctcaggtttctcatt
ttctttgatgatggctacgcttcctacgtcacacagtctgaactgtatcccatttgccgg
ccactgaaaaagacgtgggaggacatagaagacatctcctgccgagacttcatagaggag
tacatcaccgcgtaccccaaccgacccatggtgctgctcaagagtggccagcttatcaag
actgagtgggagggcacgtggtggaagtcccgagtggaggaggtggatggcagcctggtc
aggatcctcttcctggatgacaaaagatgtgaatggatctaccgaggctctacacggctg
gagcccatgttcagcatgaagacatcctcggcctctaccctggagaagaagcaaggggga
cagctccggacacgtcccaatatgggtgctgtgaggagcaaaggccctgtggtccagtat
acccaggatctgaccagtaccggcacccagtttaagccaatggagctcccacaacctaca
gccccanngcctgctacacccaccccacctgccccaccggctccacctctgtccccccag
gcaggtgacactgaaagcttggaaagccagcttgcccaagcacggaagcaggtagccaaa
aagagcacgtctttccggccaggatctgtgggctctggtcattcctcccctacatccccc
gcactcagtgaaaatgtccctggtgggaaacctgggatcaaccaaacatatagatcaccg
ttaggctcaacaaccgctgccccggcacccctggcgcccccggcgcccccagcacctcct
gtaccccctgctccctcagcacccccagccctcccagccctcccagccttcccggcattc
cacggcatgctggagcgggccccggcagagccctcctaccgcgcccccatggagaagctt
ttctatttacctcacgtctgcagctatacttgtctgtcgcgagtcagacctataaggagt
gagcagtaccggggcaagaaccctctgctcgtcccactgctctatgacttccggcggatg
acagcccggcgccgagtgaaccgcaagatgggcttccatgttatctataagacaccctgt
ggcctctgccttcggacaatgcaggaaatcgaacgctacctgtttgagactggctgtgac
tttctcttcctggagatgttctgtttggatccgtacgttcttgtggaccggaagtttcaa
ccctttaagcctttttactatattttggacatcacctatgggaaagaagacgttccccta
tcttgtgtcaatgagattgacacaacccccccgccccaggtggcctacagcaaggaacga
atcccgggcaagggtgttttcattaacacgggccctgaattcctggttggctgtgactgc
aaggacgggtgccgggacaagtccaaatgcgcctgccatcagctaactatccaggctaca
gcctgcacccctggcggccaaaccaaccccaactctggctaccagtacaagaggctggag
gagtgtctgcccaccggagtttatgagtgtaacaaacgctgcaactgtgacccaaacatg
tgcacaaaccggttggtgcagcacggactccaggttcggctccagctgttcaagacgcag
aacaagggctggggtatccgctgcttggacgacattgccaaaggctcctttgtttgtatt
tatgcaggcaaaatcctgacggacgactttgcagacaaggagggcctggagatgggtgac
gagtactttgccaacctggaccacatcgagagcgtggagaacttcaaggagggctacgag
agcgacgcgccctgctcctccgacagcagcggcgtggatctgaaggaccaggaggacggc
aacagcggcactgaggaccccgaggagtccaatgacgacagctcggatgacaacttctgc
aaggacgaggacttcagcaccagctccgtgtggcgtagctatgccacccggcggcagaca
cgcggccagaaggagaacggcttgtccgagacagcttccaaggactcacgccctccagac
ctcggccccccacatctgccggtccccctcgccatgcctctgggtggctgcaatccgccc
tcctctgaagagacgcccaagaacaaggtggcctcgtggttgagctgcaatagtgtcagt
gagggtggctttgctgactcagatagccgttcatcctacaagaccagcgaaggtggggac
ggccgggctgggggaggccgaggggaagccgagaaggcctccacctcggggctgggcctc
aaggaggagggagacatcaagccggccaagaaagaggaccctgacgaccgacccaagatg
tcaatggttactgagagctctcgaaattatgggtacaacccgtctcccatgaagatggaa
ggacttcgccgcccgcctagtaagacgagtatgcaccagagccgccggctcgtggcctca
gcccagtcccaccctgatgatgtcctgacactgtccagcagcacagaaagtgagggggaa
agtgggaccagccggaagcccactgctggtcagacttcagccacggccgttgacagtgat
gacatccagaccatctcgtctggctctgaaggcgacgacttcgaggacaagaagaacatg
tccggtccaatgaagcgccaggtggcagtaaaatcaacccgaggctttgctcttaagtca
acccatgggattgccattaagtccaccaacatggcgtccgcggagaagggggagagcgca
cccatccggaagaacacccgccagttctacgacggcgaggagtcctgctacatcatcgac
gccaagctcgaaggcaacctgggccgctacctcaatcacagttgcagccccaacctgttt
gtccagaatgtcttcgtggatacccatgaccttcgcttcccctgggtggccttctttgcc
agcaagagaatccgggctgggacagaattgacctgggactacaactacgaggtaggcagc
gtggaaggcaaggagctgctgtgctgctgcggagccatcgagtgccgagggcgcctgctc
tag

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