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TRANSCRIPT CARD

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  1. Transcript 'Haaura.CG.MTP2014.S2...'
  2. EST 'AHC0AAA222YG10_RM1'
  3. Transcript 'Haaura.CG.MTP2014.S3...'
  4. Transcript 'Harore.CG.MTP2014.S3...'

Transcript Model

Transcript Id

Harore.CG.MTP2014.S37.g13506.01.t

Possible name(s)

MARK1; MARK3; MARK4

Location

S37 [182,979 / 212,056]

Sequences

Amino acid sequence

Length: 818

>Harore.CG.MTP2014.S37.g13506.01.p
MSNRSGLPTLKESIDKGGGGDGPGNSINSHNHNHSSGGNRSSNRIVCPDEQPHIGKYRVL
KTIGKGNFAKVKLARHVLTGREVAIKIIDKKQLNPSSLQKLFREVRIMKHLDHPNIVKLY
EVIENSKQLLLVMEYANGGEVFDYLVAHGRMKEKEARAKFRQIVSSVQYLHSKHIVHRDL
KAENLLLDSDMNIKIADFGFSNEFTPGSKLDTFCGSPPYAAPELFQGKKYDGPEVDVWSL
GVILYTLVSGSLPFDGQNLKELRERVLRGKYRIPFYMSTDCENLLKRFLVLNPLKRGTLT
SIMQDKWMNIGYEDDLLKPHIHPDFNDKDQERIEKMVEMGYKREDVLKSLLNRAYDESFG
TYLLLGTHPSELWDGSASRSSSALSLTGRNSSIINSGGQQVSKRVQRSVSANTKHGQRRQ
SSETNSAVKSTSYKGVTRTTSSHHQHQTGVRNGHPESPRAVSSGLSSSSSVQDRNSMKAQ
IESSSNANNPNKAEIPLRMQSTQRPDSTKGKAITDSMTRRNTYVSGERRQDRSTLPPNAN
SPPEQPVSARSRHSKQGDVNNQSPTSDTPDSLGPSRPNMPTNNKNSSSPVHRATSMVPSR
SSTASHHVSSTGTPAPSNTNFPRNAMERRTYHGQSRDRTRRTATYNGPPPPSSPSISETM
SPGVGVVGSGRSSGNYGASGRSRNSELQGSGFFSKLSSKFGRSTSRTGVPETEKDRDMKP
RSLRFTWSMKTTSAMDPNDMMKEIRKILDTNNCDYEQREKFLLFCVHGDGHADNLVQWEM
EVCKLPRLSLNGVRFKRISGTSIAFKNIASKIANELKL

Nucleotide sequence

Length: 5,234

>Harore.CG.MTP2014.S37.g13506.01.t
AGCTATCTAATCTATTTTCTAATCATGTTTGGAGCTATGCTATGATAAAATCTCCAATCT
CATTTCGATCATTTTCTCTTCAAACTATATCGACTCTTGGAAGAAGTTGCTAATCAAAGA
AGTGGTTGAATCATGTCAAATCGATCAGGTTTACCGACACTGAAGGAGAGCATTGATAAA
GGAGGTGGGGGTGATGGTCCTGGAAATAGCATCAACTCCCATAATCATAATCACAGCAGC
GGAGGCAACCGATCGTCTAATAGAATCGTCTGCCCCGATGAGCAGCCCCACATTGGCAAG
TACCGAGTTCTCAAGACCATTGGCAAAGGAAATTTTGCAAAGGTCAAGCTTGCTCGACAT
GTTTTAACTGGCAGAGAGGTTGCTATAAAAATCATTGACAAGAAACAGTTGAATCCAAGC
AGTTTACAAAAGCTTTTTCGGGAGGTCAGAATAATGAAGCATTTGGATCATCCAAATATA
GTTAAACTTTATGAAGTTATAGAAAACAGCAAGCAGCTTCTTCTTGTGATGGAGTATGCA
AATGGAGGGGAAGTATTTGATTATCTTGTCGCTCATGGGAGAATGAAAGAAAAAGAAGCT
AGAGCTAAATTCCGACAAATTGTTTCATCAGTGCAATATCTTCATTCAAAGCACATCGTT
CACAGAGATCTCAAGGCGGAAAATCTGTTGCTAGATTCAGACATGAACATTAAAATCGCT
GATTTTGGCTTCAGTAATGAATTTACGCCTGGAAGTAAGCTGGACACATTTTGTGGTAGT
CCGCCGTATGCTGCTCCAGAACTTTTCCAAGGTAAGAAATACGACGGACCAGAAGTGGAT
GTTTGGTCGCTCGGTGTCATCCTTTACACACTCGTGAGCGGATCTCTGCCCTTCGATGGA
CAAAATTTAAAAGAACTCCGAGAACGTGTCTTAAGAGGAAAATATAGAATTCCTTTCTAC
ATGTCTACAGACTGTGAAAATTTACTCAAGAGATTTTTGGTCTTGAATCCATTAAAGCGA
GGAACGCTTACTTCCATCATGCAAGATAAATGGATGAATATAGGATATGAAGACGACCTA
TTGAAACCTCACATACACCCTGACTTTAATGACAAAGACCAAGAGAGGATCGAAAAAATG
GTCGAAATGGGTTATAAACGAGAAGATGTGTTAAAATCACTTTTGAACCGAGCATATGAT
GAATCTTTTGGAACTTATCTTCTCTTGGGAACTCATCCTTCAGAGTTATGGGATGGAAGT
GCCTCTCGATCGAGCAGCGCCTTATCACTGACTGGTAGAAACTCGTCTATAATCAATTCT
GGAGGACAGCAAGTTAGCAAAAGAGTGCAGCGAAGCGTGTCTGCCAACACAAAGCATGGA
CAGAGGAGACAGAGCTCGGAGACAAATTCTGCAGTAAAATCCACATCATATAAAGGAGTG
ACCAGGACGACGTCCTCGCACCATCAGCATCAGACCGGAGTTCGGAACGGGCACCCCGAA
TCGCCGAGGGCCGTATCTTCCGGTTTATCATCTTCCTCTTCAGTGCAGGATCGTAACAGC
ATGAAAGCACAGATTGAGTCTTCTTCGAATGCTAACAACCCAAACAAAGCGGAAATTCCC
CTTCGTATGCAGTCTACTCAAAGACCGGATTCAACAAAGGGCAAGGCAATAACAGACAGT
ATGACAAGAAGAAACACCTACGTCTCGGGTGAGAGAAGACAGGACAGAAGTACGCTGCCC
CCAAACGCAAACAGTCCACCCGAACAACCAGTTTCAGCTAGGTCTCGACATAGCAAGCAA
GGCGATGTTAATAACCAGTCACCCACTAGCGACACTCCCGACTCTCTTGGTCCTAGTCGA
CCAAACATGCCGACTAACAACAAAAATTCGTCATCGCCAGTCCACCGAGCCACCAGCATG
GTGCCGAGTCGGTCGTCGACGGCATCGCATCATGTTAGCAGTACCGGCACGCCTGCTCCC
AGCAACACAAATTTTCCACGCAACGCCATGGAAAGACGCACTTACCATGGCCAGTCGCGA
GACAGGACCAGGCGTACTGCCACATATAACGGCCCGCCACCTCCCTCGTCGCCTTCCATC
AGCGAAACCATGTCACCGGGAGTGGGAGTCGTTGGCAGCGGCAGATCTTCTGGCAACTAC
GGCGCTAGCGGCCGTTCGAGGAATTCTGAACTGCAAGGCAGCGGTTTCTTCAGCAAGCTG
TCTTCAAAATTTGGAAGAAGTACTAGCCGGACAGGCGTGCCGGAAACCGAAAAAGACAGG
GACATGAAGCCGCGGTCGCTACGGTTTACCTGGTCGATGAAGACCACCTCTGCCATGGAT
CCAAATGACATGATGAAAGAAATTCGTAAGATTCTTGACACCAATAACTGCGACTATGAG
CAAAGAGAAAAATTCCTGCTTTTCTGCGTCCATGGTGACGGACACGCAGACAATTTAGTG
CAGTGGGAAATGGAAGTTTGTAAACTGCCCCGGCTGTCATTGAACGGGGTCAGGTTCAAG
CGCATTTCTGGTACCAGTATAGCTTTCAAGAACATAGCTTCAAAAATAGCCAATGAACTG
AAACTATAGACTTCTGTAAATGGATTTTATTTCTAATTTTCTGATTTGGAGACTCTGTCT
CGGTGCAAGCACTCGACGTTTTTGGGGATGAAAATTTCTTCTCGCGGAATAGCATTCGTA
TCGATCTGGGTCAATTAGAGCCTTCCCAGACAAGGGTGCTATGCTAATTACATGAACGGT
CGGCACCAACTACCTCCAATCTCGCGATATAACTACTCATTTGATGTAATCTTCATCTCT
TTTTACCATCGGGGATCGGGTTAATGTCAATCTTCGCTTATGTTTGTTACTTATCGCAAA
TAATACCTGCCTTATTGCCGAAACGGGTAATAGTACAGATGTTGTAGAAAATCTGAAAAA
AAAATGGTAAAAAAGTTGGGTTCGAAAGGCAGCAAATGGAAATCACTCATTCAAATTCCA
TTAAAATACTTACACATTATTCTGTAACGCGAGTTTCATTTCTTTTTGATCGTGACGCAC
AACCTTACACCATTCCAATCTTTGTTTCTGCTCAGAGAGGTGTTGCGAGGTTTTTGTTCT
TTTTCCCTATTCTATTTCGAAAGCACAAGATTTTTTTAAAATCCTCTCCAAAGCCGCTAT
CTTTCTACTCTATACCAGATAAAGCGTAAAGAGTTTCTTCTTAGGAAGTTTTTTGTAACA
TTACATGCGAAATTTGTAATATTACCTTTGCATGTGCCATGAACAAACTGTAATTTAATT
GCATTTCAAGACTGAAGATATCCATGTCTTAGCTTTGATATTTTTTCCCCAGATGACCTT
GCAATCAAGTTGCAAGTTTAGTACCATGTATCATTATTTTCATCTAAACTAGTCATAAAA
GTTACTATCCACCTCAAACCAATATTTAGGGAAGCTATTCTCCTATAGTCTAGTTTGCTA
TTCCTCAAATAGATTCAAGTTCTGCTGTGGAAACAAAAAAATATAAGTTCTCATTATTAT
TTAATGTTGTGTTTTGTAATTAGTCCAAATACAAATCGTTGATTCTCTGCATCTATATAT
ATTTAAATTGCTTGGTGAATGTATAAGCCTTTTTTTTAATATTGACGTTTTTACGTGATT
GAATATGAAAGCTTCTGCGCCTGTTTCCCTGCCGTATTCCCAGTACAATCTCGGTAGCCA
CCAGCGCAGCTCCGCTCCCCCTCCCCCCACCGGTGCTTATTTTGTGCATATATTCGATTT
CTTTGTGCATTGATGTCTTACAGTTTCTTGAACCACTTTGTCAATGTCTTTTCCAGCAAT
TTCCTGGCGGTGAGTGTAACGTCATTTTAGTATATTTTTCCCAATGATTTTAACTATTTC
CAATGAAGATTTTTCTCGTCTGCACCAGTTATACCAACAAGCGGAAGTGATCCACACTGT
TTTATATTTTTATGTCGTCCAAATGGCTTAGTACACGACCAGCAATGTTTTTGTTTTGTT
GTGCTGATAGGCTTTTTAACAGATAATGCATGCGCTTTTTCTATGGGTGTTGTTCGGGAG
TCTGCTGTCATATCTTCGGTTGAAAAGTAAATTCTTAAGGCACATGTTTGATCAAAAAGT
ATGGAAGTTTCATTAACTGTCTAATAGGTATGTTTTCACTACTCACTTAAGTTTCTTATC
ATTGTTATGGAAATAGGTATGTGATAAAATTCATATTTTCATTGTTGCATGAGAAACATT
CTGTATAAAACTATTCAATTAATGACAAAATTTACATTCTATACTTTGACACAAGGTTGA
GTATCTCTGCTCTGCATATAAAACTAAAATATGTTGGTCTTATATATCGCCATATATATC
ACTATCGGAACAGCAGTGTATGCCCATCAAATGTCCGTGTTCCTCTAATTAAACTCAGTG
AGCTAATTTATGTACTTTTAAGACGTAATACTGCTTGTTGTCGCTAATGTCATTTTCTTC
GTTCGTTCTTGTTGAATCTGTTATATTATATATTTCTTTCCAATTTAATTCGCATTTTTT
CGCGCATTCATTCTCTTTTTCTAAAGCAAGTACATCGTAGGGATGGCCATTCATTCAGAT
CAATAATTTTTTTCAAGTTCTTCAAATGAATGTCTTGAAACAGTTTTAGTATTGGCAAGG
GAGTGTTCAAATCTTACTTACTGCTGTGTTGCCACGCATGTTTTGTTTGATAATGAATAA
GAATTTTTCACACTGAATTCTCTCTGCCATCTTTCCAGTGGATTTTCTGAATGAAAGAAT
CTATACGTTTTTTCCTGGCCTTAAGAATTGTACGGTTTTGTGTTGCCTGCCGTAAATATT
ATCTACTGTGCATGGATTAACCATCTATTGGCTATACTGTTGCTCAAGTTTTGCATTGGT
TCATTTTATGACAATTACAGTGGTTCATAAATTTCTTCTCGTGTTAAGCTTTAAATGATT
TCAGAACAGTGGTGGTCAAGTAATTATACCTTAGGCTCTTCGCTATATTGTATTTTGTTA
GTAGTAAAAAGAGTATCTTCTGTCCGCTATAGACAAAAAGTTGAAAATATTGTCGAGGTT
TTTGTGACCGCATTTGCATTTGCCTGTTATATATTTTTGACTGAACCTGACACTTGAGCT
AATGCTTATTGATAATTGTTATAGGTTCAGATCAACATAACAGCTTGAAGTTCATCCACA
CAGCAAGAACTGGT

InterProScan

PANTHER
MARK3 (IPR033628) - T[1-818] 0.0
PANTHER
MARK/par1 (IPR033624) - T[1-818] 0.0
SUPERFAMILY
Kinase-like_dom_sf (IPR011009) - T[54-309] 2.29E-97 - T[529-615] 2.29E-97
Pfam
Prot_kinase_dom (IPR000719) - T[57-308] 2.7E-76
ProSiteProfiles
Prot_kinase_dom (IPR000719) - T[57-308] 53.559
SMART
Prot_kinase_dom (IPR000719) - T[57-308] 1.4E-107
ProSitePatterns
Protein_kinase_ATP_BS (IPR017441) - T[63-86] .
ProSitePatterns
Ser/Thr_kinase_AS (IPR008271) - T[175-187] .
ProSiteProfiles
UBA (IPR015940) - T[327-367] 11.27
SMART
UBA (IPR015940) - T[329-366] 0.0011
SUPERFAMILY
KA1/Ssp2_C (IPR028375) - T[708-818] 3.92E-46
ProSiteProfiles
KA1_dom (IPR001772) - T[769-818] 18.457
Pfam
KA1_dom (IPR001772) - T[776-818] 1.4E-20

Best Blast Hits in UniProt
Protein Name Identity Bit Score e-value
MARK4_HUMAN 47.727 % 668 0
MARK3_HUMAN 56.835 % 845 0
MARK1_HUMAN 53.935 % 785 0