Arvicola amphibius (Eurasian water vole): 119822844
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Entry
119822844 CDS
T08327
Symbol
Prmt2
Name
(RefSeq) protein arginine N-methyltransferase 2 isoform X1
KO
K11435
type I protein arginine methyltransferase [EC:
2.1.1.319
]
Organism
aamp
Arvicola amphibius (Eurasian water vole)
Brite
KEGG Orthology (KO) [BR:
aamp00001
]
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03036 Chromosome and associated proteins [BR:
aamp03036
]
119822844 (Prmt2)
Enzymes [BR:
aamp01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.319 type I protein arginine methyltransferase
119822844 (Prmt2)
Chromosome and associated proteins [BR:
aamp03036
]
Eukaryotic type
Histone modification proteins
HMTs (histone methyltransferases)
PRMTs (protein arginine metyltransferases)
119822844 (Prmt2)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
SH3_1
SH3_2
SH3_9
MTS
Methyltransf_25
PrmA
Methyltransf_23
Methyltransf_11
Methyltransf_31
PRMT5
Met_10
Methyltransf_18
Methyltransf_12
TehB
FtsJ
Methyltransf_16
CMAS
Methyltransf_24
DREV
Methyltransf_9
PRMT5_C
DOT1
Methyltransf_32
Motif
Other DBs
NCBI-GeneID:
119822844
NCBI-ProteinID:
XP_038198375
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All DBs
Position
9:complement(115947240..115971379)
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AA seq
445 aa
AA seq
DB search
METPGDCPGNESQATPVLEEEPVDYGCEMQLLQDGAQLQLQLQPEEFVAIADYTATDETQ
LSFLRGEKILILRQTTADWWWGERAGCCGYIPANHLGKQMEEYDPEDTWQDEEYFDSYGT
LKLHLEMLADQPRTTKYHSVILQNKESLKDKVILDVGCGTGIISLFCAHHARPKAVYAVE
ASEMAQHTGQLVQQNGFADTITVFQQKVEDVVLPEKVDVLVSEWMGTCLLFEFMIESILY
ARDTWLKEDGVIWPTTAALHLVPCSADKDYHSKVLFWDNAYEFNLSALKSLAIKEFFSKP
KSNHILKPEDCLSEPCTILELDMRTVQISDLETMRGELRFDIQKTGTLHGFTAWFSVYFQ
SLEEGQPQQVLSTGPLHPTTHWKQTLFMMDDPVPVHTGDVVTGSVVLQRNPVWRRHMSVS
LSWTVTSTLDPTSQRVGKKVFPIWR
NT seq
1338 nt
NT seq
+upstream
nt +downstream
nt
atggagacaccaggtgactgtcccggaaatgagtcacaggccaccccggtcctggaggaa
gagcctgtggattatggctgtgagatgcagctcctgcaggatggggcacagttgcagctc
cagctgcagccagaagagttcgtggccattgcagactatactgccaccgacgagactcag
ctcagttttttgagaggagaaaaaattctcatcctgagacaaacgacagctgactggtgg
tggggtgagcgtgccggctgctgtggctacatccctgccaaccaccttgggaagcagatg
gaggagtatgaccccgaggacacctggcaagatgaggagtactttgacagctatggaact
ctgaaacttcacctggaaatgttggctgaccagcctcgcacaacgaaataccacagtgtc
atcctgcagaacaaggagtccctgaaggacaaggtcatcctggacgtgggctgtggcact
gggatcatcagcctcttctgtgctcaccatgcacggcccaaggcagtctatgccgtggag
gccagtgagatggcacagcacacaggccagctggtccagcagaacggctttgctgacacc
atcaccgtgttccagcagaaggtggaagacgttgtgctgcctgagaaggtggacgtgctg
gtgtcagagtggatggggacctgcctcctgtttgagttcatgatcgagtccatcctctat
gcccgggacacttggttaaaggaggatggtgtcatctggccgaccacagccgccctgcac
ctggtgccctgcagcgccgataaggactaccacagcaaggtgctcttctgggacaacgca
tacgagttcaacctcagtgcactcaagtctttggcaatcaaggagtttttttcgaagccc
aaatctaatcatatcttgaagccagaagattgtctctctgaaccatgcaccatattggag
ctggacatgagaactgtgcagatctccgacctggagaccatgcgtggtgagctgcgattt
gacatccaaaagactggtaccttgcatggcttcacagcttggttcagtgtgtacttccag
agcctagaggagggtcagcctcagcaggtgctcagcacaggcccgctgcaccccaccaca
cactggaagcagaccttgtttatgatggatgaccctgtcccagtccacacaggagacgtg
gtcacgggctctgttgtgttacaaagaaatccggtgtggagaaggcacatgtccgtctcc
cttagctggactgtcacttctacactcgaccccacatctcaaagagttggaaagaaagtc
tttccaatctggaggtga
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