Tag |
Content |
WERAM ID |
WERAM-Hos-0235 |
Ensembl Protein ID |
ENSP00000359095.1 |
Uniprot Accession |
Q96LA8; ANM6_HUMAN; A3KME1; B4DID8; Q5T5Y5; Q6DKI4; Q9NVR8 |
Genbank Protein ID |
NP_060607.2 |
Protein Name |
Protein arginine N-methyltransferase 6 |
Genbank Nucleotide ID |
NM_018137.2 |
Gene Name |
PRMT6;ANM6 |
Ensembl Information |
|
Details |
Type |
Family |
Domain |
Substrates |
AA |
References (PMIDs) |
HMT |
PRMT |
PRMT-type |
H2AR3; H3R2; H4R3 |
R |
18079182; 23557020 |
|
Status |
Reviewed |
Classification |
Type |
Family |
E-value |
Score |
Start |
End |
HMT |
PRMT |
7.60e-111 |
372.6 |
45 |
357 |
|
Organism |
Homo sapiens |
NCBI Taxa ID |
9606 |
Functional Description (View)Functional Description
Arginine methyltransferase that can catalyze the formation of both omega-N monomethylarginine (MMA) and asymmetrical dimethylarginine (aDMA), with a strong preference for the formation of aDMA. Preferentially methylates arginyl residues present in a glycine and arginine-rich domain and displays preference for monomethylated substrates. Specifically mediates the asymmetric dimethylation of histone H3 'Arg-2' to form H3R2me2a. H3R2me2a represents a specific tag for epigenetic transcriptional repression and is mutually exclusive with methylation on histone H3 'Lys-4' (H3K4me2 and H3K4me3). Acts as a transcriptional repressor of various genes such as HOXA2, THBS1 and TP53. Repression of TP53 blocks cellular senescence (By similarity). Also methylates histone H2A and H4 'Arg-3' (H2AR3me and H4R3me, respectively). Acts as a regulator of DNA base excision during DNA repair by mediating the methylation of DNA polymerase beta (POLB), leading to the stimulation of its polymerase activity by enhancing DNA binding and processivity. Methylates HMGA1. Regulates alternative splicing events. Acts as a transcriptional coactivator of a number of steroid hormone receptors including ESR1, ESR2, PGR and NR3C1. Promotes fasting-induced transcriptional activation of the gluconeogenic program through methylation of the CRTC2 transcription coactivator. May play a role in innate immunity against HIV-1 in case of infection by methylating and impairing the function of various HIV-1 proteins such as Tat, Rev and Nucleocapsid protein p7 (NC). |
Arginine methyltransferase that can catalyze the formation of both omega-N monomethylarginine (MMA) and asymmetrical dimethylarginine (aDMA), with a strong preference for the formation of aDMA. Preferentially methylates arginyl residues present in a glycine and arginine-rich domain and displays preference for monomethylated substrates. Specifically mediates the asymmetric dimethylation of histone H3 'Arg-2' to form H3R2me2a. H3R2me2a represents a specific tag for epigenetic transcriptional repression and is mutually exclusive with methylation on histone H3 'Lys-4' (H3K4me2 and H3K4me3). Acts as a transcriptional repressor of various genes such as HOXA2, THBS1 and TP53. Repression of TP53 blocks cellular senescence (By similarity). Also methylates histone H2A and H4 'Arg-3' (H2AR3me and H4R3me, respectively). Acts as a regulator of DNA base excision during DNA repair by mediating the methylation of DNA polymerase beta (POLB), leading to the stimulation of its polymerase activity by enhancing DNA binding and processivity. Methylates HMGA1. Regulates alternative splicing events. Acts as a transcriptional coactivator of a number of steroid hormone receptors including ESR1, ESR2, PGR and NR3C1. Promotes fasting-induced transcriptional activation of the gluconeogenic program through methylation of the CRTC2 transcription coactivator. May play a role in innate immunity against HIV-1 in case of infection by methylating and impairing the function of various HIV-1 proteins such as Tat, Rev and Nucleocapsid protein p7 (NC).
|
Domain Profile |
HMT PRMT
PRMT.txt 2 qqylqslselLesgvyeemlkDevrtdaYreailknktllkdkvvldvGaGtGiLslfaakagarkvyavekspmakvarkvvkvnglkdrv 93 q y++++s++ +v+eem++D+vrtdaYr +il+n+++l+ k+vldvGaGtGiLs+f+a+agar+vyave+s+++++ar+vv++ngl+drv ENSP00000359095.1 45 QLYYECYSDV---SVHEEMIADRVRTDAYRLGILRNWAALRGKTVLDVGAGTGILSIFCAQAGARRVYAVEASAIWQQAREVVRFNGLEDRV 133 89********...******************************************************************************* PP PRMT.txt 94 tvikgkveelelpkekvDiivSEllgsfllnEsllpsvlhardkfLkddglslPdkatlyvapiedtklykeekaefw...ksvygvdlscl 182 +v++g ve++elp e+vD+ivSE++g+ ll+Es+l+svlhar+k+Lk++gl+lP++a+l++api+d+ + e++ fw k++ygvd+scl ENSP00000359095.1 134 HVLPGPVETVELP-EQVDAIVSEWMGYGLLHESMLSSVLHARTKWLKEGGLLLPASAELFIAPISDQ--MLEWRLGFWsqvKQHYGVDMSCL 222 *************.*****************************************************..799******9999********** PP PRMT.txt 183 ekaaikeqfesp..lVdtldkekllsepkkiftfdiskakesd..ee.relslelevkrnaslhglaayFdvqft...sektvvlStaPetk 266 e++a+++++ ++ +V+ l+ e++l++p++++++++s+a ++ e+ + +++++++ +a +hg+a++F+v+f+ sek +vlSt+P ENSP00000359095.1 223 EGFATRCLMGHSeiVVQGLSGEDVLARPQRFAQLELSRAGLEQelEAgVGGRFRCSCYGSAPMHGFAIWFQVTFPggeSEKPLVLSTSP--F 312 *********998889************************99886545799************************9999***********..* PP PRMT.txt 267 spathWkqavlyledpltvkegekis..illlarkknsrdvdyel 309 +pathWkqa+lyl++p++v++++++s i+ll++++n+r++++ l ENSP00000359095.1 313 HPATHWKQALLYLNEPVQVEQDTDVSgeITLLPSRDNPRRLRVLL 357 ****************************************99876 PP
|
Protein Sequence (Fasta) | MSQPKKRKLE SGGGGEGGEG TEEEDGAERE AALERPRRTK RERDQLYYEC YSDVSVHEEM 60 IADRVRTDAY RLGILRNWAA LRGKTVLDVG AGTGILSIFC AQAGARRVYA VEASAIWQQA 120 REVVRFNGLE DRVHVLPGPV ETVELPEQVD AIVSEWMGYG LLHESMLSSV LHARTKWLKE 180 GGLLLPASAE LFIAPISDQM LEWRLGFWSQ VKQHYGVDMS CLEGFATRCL MGHSEIVVQG 240 LSGEDVLARP QRFAQLELSR AGLEQELEAG VGGRFRCSCY GSAPMHGFAI WFQVTFPGGE 300 SEKPLVLSTS PFHPATHWKQ ALLYLNEPVQ VEQDTDVSGE ITLLPSRDNP RRLRVLLRYK 360 VGDQEEKTKD FAMED 375Protein Fasta Sequence
>ENSP00000359095.1|PRMT6;ANM6|Homo sapiens MSQPKKRKLESGGGGEGGEGTEEEDGAEREAALERPRRTKRERDQLYYECYSDVSVHEEMIADRVRTDAYRLGILRNWAALRGKTVLDVGAGTGILSIFCAQAGARRVYAVEASAIWQQAREVVRFNGLEDRVHVLPGPVETVELPEQVDAIVSEWMGYGLLHESMLSSVLHARTKWLKEGGLLLPASAELFIAPISDQMLEWRLGFWSQVKQHYGVDMSCLEGFATRCLMGHSEIVVQGLSGEDVLARPQRFAQLELSRAGLEQELEAGVGGRFRCSCYGSAPMHGFAIWFQVTFPGGESEKPLVLSTSPFHPATHWKQALLYLNEPVQVEQDTDVSGEITLLPSRDNPRRLRVLLRYKVGDQEEKTKDFAMED
|
Nucleotide Sequence (Fasta) | GCGCTACGCC CGCCGGGAGC CGGGCAGAGC GGCCAAGATG TCGCAGCCCA AGAAAAGAAA 60 GCTTGAGTCG GGGGGCGGCG GCGAAGGAGG GGAGGGAACT GAAGAGGAAG ATGGCGCGGA 120 GCGGGAGGCG GCCCTGGAGC GACCCCGGAG GACTAAGCGG GAACGGGACC AGCTGTACTA 180 CGAGTGCTAC TCGGACGTTT CGGTCCACGA GGAGATGATC GCGGACCGCG TCCGCACCGA 240 TGCCTACCGC CTGGGTATCC TTCGGAACTG GGCAGCACTG CGAGGCAAGA CGGTACTGGA 300 CGTGGGCGCG GGCACCGGCA TTCTGAGCAT CTTCTGTGCC CAGGCCGGGG CCCGGCGCGT 360 GTACGCGGTA GAGGCCAGCG CCATCTGGCA ACAGGCCCGG GAGGTGGTGC GGTTCAACGG 420 GCTGGAGGAC CGGGTGCACG TCCTGCCGGG ACCAGTGGAG ACTGTAGAGT TGCCGGAACA 480 GGTGGATGCC ATCGTGAGCG AGTGGATGGG CTACGGACTC CTGCACGAGT CCATGCTGAG 540 CTCCGTCCTC CACGCGCGAA CCAAGTGGCT GAAGGAGGGC GGTCTTCTCC TGCCGGCCTC 600 CGCCGAGCTC TTCATAGCCC CCATCAGCGA CCAGATGCTG GAATGGCGCC TGGGCTTCTG 660 GAGCCAGGTG AAGCAGCACT ATGGTGTGGA CATGAGCTGC CTGGAGGGCT TCGCCACGCG 720 CTGTCTCATG GGCCACTCGG AGATCGTTGT GCAGGGATTG TCCGGCGAGG ACGTGCTGGC 780 CCGGCCGCAG CGCTTTGCTC AGCTAGAGCT CTCCCGCGCC GGCTTGGAGC AGGAGCTGGA 840 GGCCGGAGTG GGCGGGCGCT TCCGCTGCAG CTGCTATGGC TCGGCGCCCA TGCATGGCTT 900 TGCCATCTGG TTCCAGGTGA CCTTCCCTGG AGGGGAGTCG GAGAAACCCC TGGTGCTGTC 960 CACCTCGCCT TTTCACCCGG CCACTCACTG GAAACAGGCG CTCCTCTACC TGAACGAGCC 1020 GGTGCAAGTG GAGCAAGACA CGGACGTTTC AGGAGAGATC ACGCTGCTGC CCTCCCGGGA 1080 CAACCCCCGT CGCCTGCGCG TGCTGCTGCG CTACAAAGTG GGAGACCAGG AGGAGAAGAC 1140 CAAAGACTTT GCCATGGAGG ACTGAGCGTT GCCTTTTCTC CCAGCTACCT CCCAAAGCAG 1200 CCTGACCTGC GTGGGAGAGG CGTAGCGAGG TCGGAGGGGA AAGGGAGATC CCACGTGCAA 1260 GTAGGGGGAA TATCTCCCCC TTTTCCCTCA TAGCCTCTAG GGAGGGAGAG TGACTTCATT 1320 CTCCATTTGA AGAGATTCTT CTGGTGATGT TTACTTAAAA AGTGATCCCC CTCAACAACG 1380 GATACAGCGT GCTTATTATT GGGCATTTAG CCTCAAAAGC ATGTAGTACC AAGCACTTGT 1440 ATTTCCGTAT ATTTTGTTTC GCGGGGGAGT GAGGGGGAAG AACACGGATG AAAATGTCAG 1500 TTTTTGAAGG GTCCATGCAC ATCCCTGACA CCTCACACCT TATCTAAGTC TGAAGCTGGG 1560 GAGAAAGGGG TTCATTTAGA CTTCATACAT TTCCAGTACG ACTTTAGTAT CTCTCCAGAG 1620 CCATATTTTC TCAGTCCGAA TTAATTCCCC CTCCCTAGGT GCCTGTAGGC TATGGTACTT 1680 CTTCCTCATT GTTTTCTAGG TAAACTTCAC TACTGGTAAT TAAGGGGAAG GATATGAGGA 1740 AGCAGTTTAA ATAGCCCTGT TCTCATTACT CTGACCACAT ACATCATAGG GTGCTAAAGT 1800 TGATGAACAC ATTAATCCGT TAAGTAAAAT GGACTTTGTA ATTGTACAGC ATACCTAAGA 1860 AACTCAGAAG GTGCATTTAA GAGAGAGACC TGAAAGAAAT AGTATGGATT TTTAAAAATT 1920 CTTGTCTCTA CTATTATAAC CAAAAAATAT TTCTTGTATG TCCCATAAAA ATATTTGTGT 1980 AATTCTTATG AAACAGGCTG GTAGAGGAGG TTTCTGAGCC TAGCCCAAGG GCTTATTCAT 2040 CACCATGGGT AAATTATTTA AACTCACTTA ATTAAGGAAA ATATTTTCCC AGCTAGAAAA 2100 GTATACTCAT TCTCATTTAA ACTCTCTCAT TTGGAGGGAT CATGTGAGTT GGCCTACTTA 2160 CAAGTAGTGA AAGTTCCCTT TTCAGTTTTG TTTTGTTTTG TTTTGTTTTT CTCTTTCACT 2220 CAGCCAAATG TGAAAGTTGT GAATTTAGGA AAATCACTTG TAATGAAGTG TGAATCTTGT 2280 TATCAAATTT ATTTCTCTGA TGTTTCCTTC CTTATCCTTG TAGCCAATAA AACATTGACA 2340 TTCTCACGTT TTATAGATGA GGTAAAAAGT CTTGTGTGCT GTGAGTTATA ATGCTTTTGC 2400 CTTTTTAATA TTATTAGTTC TTAAGTGTTA CAGCCCCTTC AGAATATAAC TTCAGGACAA 2460 TTCAAACTAT GCTTAATGTA TGATTTTCGA GCTTCTGTAT GCTAAGAAAA TAGGTGTGAA 2520 AAACTGGTGT TCTGAAATAG CCTAACATTT ATTGTAATTC TGAATTTTCT GCCCTTTTAT 2580 TCATTGCATA TTAAAGTATT AGAGTATAAA AACTAA
2617Nucleotide Fasta Sequence
>ENSP00000359095.1|PRMT|Homo sapiens GCGCTACGCCCGCCGGGAGCCGGGCAGAGCGGCCAAGATGTCGCAGCCCAAGAAAAGAAAGCTTGAGTCGGGGGGCGGCGGCGAAGGAGGGGAGGGAACTGAAGAGGAAGATGGCGCGGAGCGGGAGGCGGCCCTGGAGCGACCCCGGAGGACTAAGCGGGAACGGGACCAGCTGTACTACGAGTGCTACTCGGACGTTTCGGTCCACGAGGAGATGATCGCGGACCGCGTCCGCACCGATGCCTACCGCCTGGGTATCCTTCGGAACTGGGCAGCACTGCGAGGCAAGACGGTACTGGACGTGGGCGCGGGCACCGGCATTCTGAGCATCTTCTGTGCCCAGGCCGGGGCCCGGCGCGTGTACGCGGTAGAGGCCAGCGCCATCTGGCAACAGGCCCGGGAGGTGGTGCGGTTCAACGGGCTGGAGGACCGGGTGCACGTCCTGCCGGGACCAGTGGAGACTGTAGAGTTGCCGGAACAGGTGGATGCCATCGTGAGCGAGTGGATGGGCTACGGACTCCTGCACGAGTCCATGCTGAGCTCCGTCCTCCACGCGCGAACCAAGTGGCTGAAGGAGGGCGGTCTTCTCCTGCCGGCCTCCGCCGAGCTCTTCATAGCCCCCATCAGCGACCAGATGCTGGAATGGCGCCTGGGCTTCTGGAGCCAGGTGAAGCAGCACTATGGTGTGGACATGAGCTGCCTGGAGGGCTTCGCCACGCGCTGTCTCATGGGCCACTCGGAGATCGTTGTGCAGGGATTGTCCGGCGAGGACGTGCTGGCCCGGCCGCAGCGCTTTGCTCAGCTAGAGCTCTCCCGCGCCGGCTTGGAGCAGGAGCTGGAGGCCGGAGTGGGCGGGCGCTTCCGCTGCAGCTGCTATGGCTCGGCGCCCATGCATGGCTTTGCCATCTGGTTCCAGGTGACCTTCCCTGGAGGGGAGTCGGAGAAACCCCTGGTGCTGTCCACCTCGCCTTTTCACCCGGCCACTCACTGGAAACAGGCGCTCCTCTACCTGAACGAGCCGGTGCAAGTGGAGCAAGACACGGACGTTTCAGGAGAGATCACGCTGCTGCCCTCCCGGGACAACCCCCGTCGCCTGCGCGTGCTGCTGCGCTACAAAGTGGGAGACCAGGAGGAGAAGACCAAAGACTTTGCCATGGAGGACTGAGCGTTGCCTTTTCTCCCAGCTACCTCCCAAAGCAGCCTGACCTGCGTGGGAGAGGCGTAGCGAGGTCGGAGGGGAAAGGGAGATCCCACGTGCAAGTAGGGGGAATATCTCCCCCTTTTCCCTCATAGCCTCTAGGGAGGGAGAGTGACTTCATTCTCCATTTGAAGAGATTCTTCTGGTGATGTTTACTTAAAAAGTGATCCCCCTCAACAACGGATACAGCGTGCTTATTATTGGGCATTTAGCCTCAAAAGCATGTAGTACCAAGCACTTGTATTTCCGTATATTTTGTTTCGCGGGGGAGTGAGGGGGAAGAACACGGATGAAAATGTCAGTTTTTGAAGGGTCCATGCACATCCCTGACACCTCACACCTTATCTAAGTCTGAAGCTGGGGAGAAAGGGGTTCATTTAGACTTCATACATTTCCAGTACGACTTTAGTATCTCTCCAGAGCCATATTTTCTCAGTCCGAATTAATTCCCCCTCCCTAGGTGCCTGTAGGCTATGGTACTTCTTCCTCATTGTTTTCTAGGTAAACTTCACTACTGGTAATTAAGGGGAAGGATATGAGGAAGCAGTTTAAATAGCCCTGTTCTCATTACTCTGACCACATACATCATAGGGTGCTAAAGTTGATGAACACATTAATCCGTTAAGTAAAATGGACTTTGTAATTGTACAGCATACCTAAGAAACTCAGAAGGTGCATTTAAGAGAGAGACCTGAAAGAAATAGTATGGATTTTTAAAAATTCTTGTCTCTACTATTATAACCAAAAAATATTTCTTGTATGTCCCATAAAAATATTTGTGTAATTCTTATGAAACAGGCTGGTAGAGGAGGTTTCTGAGCCTAGCCCAAGGGCTTATTCATCACCATGGGTAAATTATTTAAACTCACTTAATTAAGGAAAATATTTTCCCAGCTAGAAAAGTATACTCATTCTCATTTAAACTCTCTCATTTGGAGGGATCATGTGAGTTGGCCTACTTACAAGTAGTGAAAGTTCCCTTTTCAGTTTTGTTTTGTTTTGTTTTGTTTTTCTCTTTCACTCAGCCAAATGTGAAAGTTGTGAATTTAGGAAAATCACTTGTAATGAAGTGTGAATCTTGTTATCAAATTTATTTCTCTGATGTTTCCTTCCTTATCCTTGTAGCCAATAAAACATTGACATTCTCACGTTTTATAGATGAGGTAAAAAGTCTTGTGTGCTGTGAGTTATAATGCTTTTGCCTTTTTAATATTATTAGTTCTTAAGTGTTACAGCCCCTTCAGAATATAACTTCAGGACAATTCAAACTATGCTTAATGTATGATTTTCGAGCTTCTGTATGCTAAGAAAATAGGTGTGAAAAACTGGTGTTCTGAAATAGCCTAACATTTATTGTAATTCTGAATTTTCTGCCCTTTTATTCATTGCATATTAAAGTATTAGAGTATAAAAACTAA
|
Sequence Source |
Ensembl |
Keyword |
KW-0002--3D-structure KW-0025--Alternative splicing KW-0156--Chromatin regulator KW-0181--Complete proteome KW-0227--DNA damage KW-0234--DNA repair KW-0945--Host-virus interaction KW-0488--Methylation KW-0489--Methyltransferase KW-0539--Nucleus KW-0597--Phosphoprotein KW-0621--Polymorphism KW-1185--Reference proteome KW-0678--Repressor KW-0949--S-adenosyl-L-methionine KW-0804--Transcription KW-0805--Transcription regulation KW-0808--Transferase --
|
Interpro |
IPR025799--Arg_MeTrfase IPR029063--SAM-dependent_MTases
|
PROSITE |
PS51678--SAM_MT_PRMT
|
Pfam |
|
Gene Ontology |
GO:0005829--C:cytosol GO:0005654--C:nucleoplasm GO:0005634--C:nucleus GO:0003682--F:chromatin binding GO:0042393--F:histone binding GO:0042054--F:histone methyltransferase activity GO:0070612--F:histone methyltransferase activity (H2A-R3 specific) GO:0070611--F:histone methyltransferase activity (H3-R2 specific) GO:0044020--F:histone methyltransferase activity (H4-R3 specific) GO:0008469--F:histone-arginine N-methyltransferase activity GO:0016274--F:protein-arginine N-methyltransferase activity GO:0035242--F:protein-arginine omega-N asymmetric methyltransferase activity GO:0035241--F:protein-arginine omega-N monomethyltransferase activity GO:0006284--P:base-excision repair GO:0016049--P:cell growth GO:0090398--P:cellular senescence GO:0034970--P:histone H3-R2 methylation GO:0043985--P:histone H4-R3 methylation GO:0016571--P:histone methylation GO:0000122--P:negative regulation of transcription from RNA polymerase II promoter GO:0045892--P:negative regulation of transcription, DNA-templated GO:0019919--P:peptidyl-arginine methylation, to asymmetrical-dimethyl arginine GO:0006351--P:transcription, DNA-templated GO:0016032--P:viral process
|
Orthology |
|
Created Date |
25-Jun-2016 |