Annotated TAIR ID | AT3G19050.1 |
Annotated Gene Name | phragmoplast orienting kinesin 2 |
Annotated Gene Symbol(s) | POK2 |
Annotation Type | Ortholog |
Chromosome Position | chr3:6578047-6590106 | Forward length=2771 |
E-Value | 0 |
Replicate 1 | 2.1609613536653 |
Replicate 2 | 1.2934384713637 |
Replicate 3 | 1.2179165338227 |
Replicate 1 | 1.4226507017494 |
Replicate 2 | 1.1834165217106 |
Replicate 3 | 1.8170180067588 |
Replicate 1 | 0.33856625356042 |
Replicate 2 | 1.1377722118854 |
Replicate 3 | 0.99426522756017 |
>S_Transcript_188143.p1 GENE.S_Transcript_188143~~S_Transcript_188143.p1 ORF type:complete len:2968 (+),score=838.80,Kinesin|PF00225.19|1.7e-108,Kinesin-relat_1|PF12711.3|17,Kinesin-relat_1|PF12711.3|1.4e-28,Kinesin-relat_1|PF12711.3|21,Kinesin-relat_1|PF12711.3|7e+03,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|6.5e+03,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|2e+03,Kinesin-relat_1|PF12711.3|9.7e+03,Kinesin-relat_1|PF12711.3|7.9e+02,Kinesin-relat_1|PF12711.3|9.8e+03,Kinesin-relat_1|PF12711.3|6.1e+02,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|3.4e+03,Kinesin-relat_1|PF12711.3|2.8e+02,Kinesin-relat_1|PF12711.3|4.8e+03,Kinesin-relat_1|PF12711.3|3.2e+03,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|1.2e+04,Kinesin-relat_1|PF12711.3|1.6e+04 S_Transcript_188143:208-9111(+)
ATGTTGAGGGATTTGAAATTCTTGCGGCGTAATACTGGGAAGAATAATAATGTAGAGGAAATTGAGAATGTACCCATAAACCCTAATGAGTCCAATTCGGATTCAATTTCTAATAACCCTACAAATTCAGATACATCAAAAAGGGGCCCATTACATGGGGTTCAAGAATCAGCCAAAAAACCTAAGCTTAGTAGTGTAGAGCAAGAAGCGAGTGTTAAGAGTAAGTTTGATAGAACACCCACTAAACCTAAGGGCAAAAATGAGACAACAACATTGCTACTTAGGACCCCAGAAAGGCAAGGGAATGGGAATGTAGGGAAAAACAGATTTGGATTTTCGAGTTTGAATGAATGTCGTGATGAGGGGAGGTCCGAGATGCCTACTTATTCAAGCCAGTCTAGTAGACATGGGAACAGTTCTTTGAATTTGACACCCCGTGTGGGCGGAGCTGCTCTAGGAAGGGCTAATAGTACACAATCTGAATGTACTTCAACTCAAAGTACACCAACAAAGAGTGTGAGCAAGCCGCCAAATCCTGGGTTTGCGCCTTTCAGTAGCTCACGGCATCATGGAAGTGCTCGTGGAGGGACTTATTCTGTGCTTTCTAGGAGGTTCTCGGTTGCTGGTGGCCATGGCCAGCCATGTGTTGTCAATACAGCTGAAGTTCCTCATTTTGATCTTAAGGAGGATCCATCTTTCTGGATGGATCACAATGTACAGGTGATATTAAGGGTGCGTCCTCTCAATACTTTTGAGAGAAGTACGCATGGATACAATAGATGTGTAAAGCAGGACGGTGCGCAGAGCATTACTTGGGTAGGACAACCGGAAACTCGATTCAAATTTGATCATGTAGCATGTGAAACAGTGGACCAGGAGATGCTTTTTAGGATGGCTGCTCTACCTATGGTAGAAAATTGCTTATCTGGGTATAATAGTTGCATGTTTGCCTATGGGCAGACTGGAAGTGGAAAGACATACACTATGCTCGGAGAGATGGACAACTTGGAATTTAAACCCAGCCCTCATCGTGGAATGACCCCAAGGATATTTGAGTTTTTGTTTGCCAGAATCAGAGCGGAAGAAGAAAGCAGAAGGGATGAGAGATTAAAGTACAGCTGCAAGTGCTCTTTCTTAGAGATCTATAATGAGCAAATTACTGATCTCCTTGATCCATCATCTTCAAATTTGCTTCTTCGTGAAGATGTTAAGAAGGGTGTGTATGTTGAGAATCTTTCAGAATTTGAGGTTCACACTGTCGGTGATGTTCTCAGACTTCTGATCCAGGGTTCCTCAAATAGGAAAGTGGCGGCAACAAATATGAATAGAGAGAGTAGCAGATCACATAGTGTCTTCACTTGTGTAATTGAGTGCAAGTGGGAGCGGGAATCAACTACCAACCTAAGGTTTGCCAGACTGAATCTTGTTGATTTGGCTGGTTCAGAAAGGCAGAAATCATCTGGTGCTGAGGGTGAGCGATTAAAAGAAGCAGCTAATATCAATAAATCCTTGTCAACTTTGGGTCATGTAATTATGCTATTAGTAGATATTGCTCATGGAAAGCCAAGACATGTTCCTTACAGAGATTCAAGGCTCACCTTTCTTCTTCAGGACTCACTTGGTGGTAATTCAAAGACCATGATAATTGCCAACATCAGCCCATCTATCTGTTGTGCAGCTGAAACACTAAACACACTGAAATTTGCTCAAAGAGCAAAACTGATTCAAAATAATGCTGTGGTGAATGAAGATTCCTCTGGGGATGTTGCTGCCCTGCAGCACCAAATATGGCTTTTAAAAGAGGAACTTTCTGCTTTGAAACGCCAAACTGTCTCTCGAACTTTAGCATTTGACCCTTCCTCTACCAAGAGAGGCCAGGAAAGCATTGAGACAGACAACAGATCAGAAAACCATCAGCCAGCAGCTGATGACATGCTTAATTCTGATACAAAAGGCAGTGTACGAGTATCTTCCCAACAGTTGAAGTCACTGGAAAGTATGCTTGCTGGAGCCTTGAGAAGGGAACAGATGGCAGAAACTTCCATTAGGCAGCTTGAAGCTGAAATAGAGCAGTTGAATCGTTTGGTTGGTCAAAGGGAAGAGGACACTAGATGCACCAAAATGATGCTGAAGTTCCGTGAAGAGAAGATTCATAGAATGGAATCACTTCTGGGTGATTTAAAACCTGTGGATGCATATCACCTCGAAGAGAATGCTGCTCTGTCTGAGGAGAATAAGCTGCTTCGAGCTAAAATTGAAAAGAACCCAGAAGTAACCCGATTTGCCTTAGAGAATATTAGGCTGCTTGAACAACTTAGAAGATTTCAAGACTTTTACGAAGAAGGGGAGAGAGATATTTTAATGGATGAAGTATCTCATCTACGTGGCCAGCTCATCCACTTTCTTGACAATATCAACCAGCCGCATGGCCATACGAACATGGCTCAAGATGCAGAGAGCAATGTTGAAGAAAACCAGTCTCTCCGCTCTGAGTTGACTAATACTCTGAATGAGCTAGCTGAATGTCGGAGTAAGCTGAAGTCTTGCTTAGACAGCAATGCAAAATTGAACAGGGAGATTGAGGATTTGCATGCACTTTTGAGAAATAATGAACGAGAAATAATTATGCACTGTGACATTGGTGATTCCATGAAGAAGGAAGTAGAATATCCAAGTCTTGGAGCTCAACCATTTGGTGCAGAAAAGGAGGAGAAACACAGAATTAGACATGGACCTGTGGTGACTCATGCAGAAGAAGTACTAAATTTGGAGTTGGAGCTGGATATACTGAAGATAATTCTGAAAGAAGAGAGGTTATCTCGTGGAAAAATTGAAGAGATGGAATCTTGTTTGACTAGAGATGTTCAATCAGCAGAAGAGAGAATTTTAAAAATCAGCAAGCAGTGTGAAGACGCCAAAAGGGATTTGACAGAAGCCAAAGCTGTTATTGAAGCTCTAGAGTCTCAACAACTTCTGTCCATTAATGAGATAGAAGATCTCAAAAACCTGAACAGCCATCACTTGGAACTTTTGCATAAGCAGGAGCTTGAAATCTCAGCACTAAAGGAGCAAACACGCGGGCAAGAGGCTACCTACTCATCTTTGAAGCACTCTCAATGTGAAGATTCTTCATTACAAGTACAATTGAGGAGAATGCAAGCCTCGCTTGATAAGGCCAAACGATTAAATAAATCGTACCAATGTGACCATGCTTCTCAGCTATCAAATGAAGAAGAAATGGAGGAAATATGTCGACAAGCTGAGGCAGAAACTGCTGAAGTGATTGTCTGCTTGCAGGAAGAGCTGTCCATGCTTCAACAGCAATTGCAAGCAGCTGAGCTGAGAGAGAAAGGAGAAGAAAAGAGGCTGCTTGATCTTGAGACTAAGCGGAGGGAGCTGCAAGAAACTTTGTACATGATGTCTCAAGATAATGAAGCTTTACAACAAAATCTCCAGGAGAAAGATAGAGAAATGAGTTTGTTGAGGGAAGATTGGGAGCTACTTACATGTGAGATTGAAGAAGCTCTAATTGAGGGACATGAAGCACTTAGAACTGCCTCTGATCAACTCAATCCTGTTTCTGATTCTCCTTCTAATAGAAGACACTGGATATCTGAACAATTTGGGATAATGATCAAATTGTTCTCTGACAAAGAAGCCCTCATTGAAGAGCTAAACCGGTGTTTAGAAGATGCAAATAGTAAAACCAATGAGCTGGAACACATGTTAATTTCTCTTAGAGGAGCAGCAATGGTCATGACAGAGTCGCATGAACAAGAGTGCTATGAAAAGGAGAAAGAGATTGTTCAGTTGAGGTCAGAGTTGAGTAGAAATGTTTCTGCTATAGGGGAGCTGGAGAATAGGATGAAGAGTGGTCATGCTCAAATGAGGAATACATCTGATTGTGCAACAGCAGCTTTTGTCATTGTCAATAGATTGTCTGAATTAAACTCTAGTCATCTTGATGCATTGAGGGTAATGGACATCCAGCTAAAAGAGACACAAGAAGCCAACCAGAAGAAGGATGTTTGTCTCGATGATCAGGCTACTGCATTTGAAGCAGCTCAGAAACAGATTGATACCCTTGGCAAGGAGCTGCAGGTATCAGAAGCCAACTGCACCATGCTAAGCCATCAATTAGATGAACGGCAAAGACATATGTCTATAATGCAAAGGCAAATTGAGGAGAATGATGAGATTGCCATTGCAAAGACTAAACAGACATTAGATGACCTCAAAACAGGAGTCTCTGATGTCAGGTCAAGCATCAATGAATATGTGGAGCAAGTAGGATGTCATGAAAGACCCAGCCAGAGAATTTTGTCTGTTGATGGCTTCAGAGCAGATAGGGTATCATCACCTCTTTCTGGTAATCAAGCAGAACAGGAAACCACTAAGCCAGGCGCTGGCTTTGATGAGGATTTGGAAGCTGTTGACCCAAGTGCTGCTTTAAATACTCCTTACAAAGGACAGAAAGATATTTCAGTGTCCAAGTATAATGATTTACCATCCATGAAGAGTTCTAGTGACCGTGGTAGAAGAGATGTTACTATATCTCTTCTGAAGAAAGAAATGGAATCTGCTATGCAGAGCTTAAAAGAAGTGCAAGCTGAGATGGTTCGCCTCTCCGCTGAGAAGGATGAGATCTACAAGTCTGAGAAGAAAAGTCTTGAAGGCACCAAAACAGTGAAAGCTCAGGTGCTTAGCCTGCAGGCTGCCTTGAATGATTTCGAAAGGCGCTGTGAAAATAAAGTCCTGGATTTGAATCATAAGTTGCAGAAAGTAGAAGGAGATGCTCAAGAAGCCAAAAGATCTTGGTGGAAAACAAGAGAGTCACTTGAGTTTGAAGCAGTGGATGCTAAAGCAAGTGCAGCCCAGAAGTCAGTAGAGGCTTCTTGCCTTCTCGCTAGATTTGAAGAGGCCCAAGACATGATAAAAGAGGCAGATCTAATGATTAATGGCCTGATGATAGCAAATGAAACAATGAAGCTTGAGATTGAAGACCTGAGCAAAATGAATGACACGTTAACTGGTGAGAGAGATGGCTTAATCGTTGAAGTTCAGGGATTGCGATCCTCTAATGAATTAAAGGATCAGAAATGCAAAAGCCTTGAAGATCAGCTTGAACTGGATGTCTCAGAAACTAAGATCCTTACAGAGGAGATTGAGAGGCTTGCGGCACTAGTGCAGGATTCGTCTGAAGATGCATTTATGTCTTTTGGGCATGAATTGAGCTGTATGAAGTCTGAACTTCAGGATACTGTGAAGTTTATGCATTCATCACTGGAGGAAATCTGGTCAGAGATTCTTATGAAGGACTGTGCTCTCTCAGTTTTACATCTTTGCCACATGGGAGTAATGTTAGAGGCAGTAACTGGGCTCAATGCTGAAAATGGCCTACTTCACCATGGTATCTGTGAATCAAATGCTGTAATATCTAATTTGAGGGAGCACAATTTGAAGTCAAAAGAGGAGCTTGAAATGTGTCGAATGCTCAAGGGAAAACTTTTGGCTGATATCAAGCACAGTTTTGATCGTATCTCGAGCAAAGAAGGTGAAACAACAGAGCTTAGCATGAAACTGAGCAGCTTCATTGAAAAACTAAGGGCTCTTCAACATCAAGAAGAAATGATGTTGGAAAGATCCAACATCATGAGTTCTGAGCTTGCCTTTCTAATGGAGGAGGTGGATAAGAGTAACTCAACAGTGATGGCGTCCCTTTCAGAACAAGAGAAGCTTCTGAAGAGCAATGAGGAAGTGATCAAATCTGAAGCTGAGACTTCCGCGGAAGCTTTGTTTTCGAAAGACTTAGAGCTGCTTATTGTGGCTTCTGAGCTGAAGCAATTGGCTCATCACCATGCTAATATGGAGAAGGAACAAATCATTTGTTGCTCAGCATTGAATTACTTGATGAAAGATATTGTTACTCTTAGAATAACTGTAGATTTGACAGAAGAAATGTTGTTGGAAAGGGAAAAGGAGATGCTATGCTTGCAGAAAGAAGTTACGAAAGCTAAGGATGGCGAGGCCAGAATGCTGTCCCAGTTTCAAACACTTGAAGCAGAACGCAACTCTTTAAGGGAATATTTGACCTCGAAGGAAGAGGAGAAAGAATCACTGCAAAACAAAGTGGAAGAGCTGAAGAGTGAAAACTGCTCTCTGCTTGAAGATTATCAGGTGATAGACTCTGAATTTAAGTCATCTGCAGGCTGTATTGATGCGCTCAAGTTACAAAATGGCAAATTACAAGAAACCATTGCAACTTTGGAATCAAGAATTTCCTTCCTACAAAAAGATCTTGAGATGAAAAATGCGGAGCTTGATGAGTACCAATCTTCCCAAGTTTCTACAACGGAAGCACTGTCCAAGAGAAGCCAGGATCTGGAAAGCTTTGCCTTCAAGATAAATGAACTAAAGGAGGAGAACCTCATGTTGGCGGATGAACTTCAATCTCTCAAGAAGAGAGAAACTGAAGCACTTAAAAATTCAAGCTCTAGATTTGCAAAATGTGTTGGTTCCATTGAAGCTGCTGATCTCCAGCGTTGCAGGATGCTTAAACAATTGGATAAGAAAATCATAATGGTTACTGATCAGATTTCTCAAGACCACTGCATAAACCTGGATGTCCTATCAAACTTCTTGCAAGAGTTGGAGTATGTAGAAGCCAAGGTTAAACGTTTAGCAGATGAAAACTTGTCCTTACAAGAAGAGTTGCTGAGGAAGGATGAGGTTTTAAACGGATTGCTGTTTGATCTACGCCTCTTGCAAGAGTCTGCAGTGAATAGTAAGGATCAAAAAGATGATATTGAGGAATTGTCAGCTGCTTTGGATTCTACGGAACAAGAACTCGCTGTAAGATCACAAGAGTTCGATGAAGCTGTTGCTTATGGTGAAACACTTGAAGCAAAATTAAAGGAGCAAGGAGATGTGTTATCTGCATTAGAGATGGAGTTTGAAAAGACCAACCCATCTGCGAAGCTGCTCTCTGATGAAAATCTGGAGCTGAGATCTCAAGTAGAAGAAATCACAGCAGCAAAAACTGATCTCGATAGAGAACTGATTGAGAAAAGGAGCATAATTGATGGGTTGGAAAATGAGCTACTTCAAATGGGTAACACTCTTGGTCAAATGAATGAGTTTGTTGAATCTCTCAAGAGCAACTTGGACGATGTTATCAGTGAAAAAGATGACCTCCAGAAGGAACTAGTGATATTGGAAGAAAAGGTTGAAACTGCTCATGTTCTTGCTGAGGAAAATGAAGCAATTGCTGCAGAAGCTCAAGAGGTAGCTGAATCAAGAAGGATTTATGCGGAAGAAAAGGAAGAGGAGGTGAAGCTTTTAGAGACTTCTGTTCAAGAGTTGGATTCTACCATTAGTGTATTGGAAAACAAGGTTGATATTCTAAAAGGAGAAGCTGAAAGGCAAAAGTTGCAGAGGGAGGAGCTCGAACTGGAGCTCCAATCCCTGAAAAATCAGATGCTTAATGTCGAAAGTTCTGATGCTGACATGAAAAGGCATCTAGATGAGAAATCAAGAAATCTCCAAGAAGCTTTAAAGCAAATAAAGATTCTTGAGAAGGATCTGGCAAACAAAGATAAAGAGATTGCTCAATGCAAAGCACATATTACAGAGTTGACTGTGCATGCGGAGGCTCAGGCTTGTGAGTACAAGCAGAAGTTCAAGGAGTTGGAATCAATGTTAGAACAATTGAAAGCAGACGAGGCTTCAAACCATGATAAGATTACTTCATCAAATAAGTTGGAGAAAAACGCCTCTAAAGGGAGGGGTTCTGCTTCACCTTTCAAAGCAAAGGGTTCAGGTTCCCCATTCAAAGCAAGGGGTTCTGGTTCTCCCTTCAAGTGCATCGGGCTGGGATTGTCACATCAACTAAAATCTGAGAGGGATGAGGAGCTTAATGCTGAAAGGCTTCGCATTGAAGAGCTTGAAGCCTTGGCTGCAAGCAGACAAAAAGAAATTTTCATGTTGAACTCCAGATTAGCTGCTGCAGAAAGCATGACACATGACGTGATTCGTGATCTGCTGGGAGTTAAAATGGATATGAGCAACTATGTGACATTGTTAGATAAACAACAAGTTCAAAAGATAACAGAGAAGGCACAATTTGATGTTAAAGAATCCCAGGATCAGGAAGTGAAAAAGATAAAGCACCAACTTAATGACTTTGTCGAAGAGAGACAAGGATGGCTGGAGGAAATTGACAGAAGACAAGCTGAGCTTGTTGCTGCACAGATTGCATTAGAAAAGCATCGTCAGCAAGAACAGTTGCTAGCCAGTGAAAATGAAGTACTAAAGATGGAGAATGCAAAGCATAAGCAAAGAGTGATTGAACTTGAAGGAGAGGTGAAAAAGCTATCTGGTCAACAGAACCTCCATCAGCGTATACATCATCATGCAAAGATCAAGGAAGAAAACAATGTGCTTAAGATTCAGAATGAAAACCTTACTTCCAGACTGCGGCGAGCAGAGTCATATCTAACACGTGTCAGGGACGAGCTAGCTCACTACCGTGCTAGTGGTGGAAGAAGTCCTTTTGTTAATTTGGATGAGGAGCAAAGACTAAGCAACAAACTCAGGGAGATGGAAAAGGAAAAGGTGCACTTAGCACAAACTTTATTGAGCTTATGCACAAGCATTTTGAAGGCTGCAGGTGTTACCAGACCAACATCTGAAATCAACCTTTCTGCAGCTGAGGAAGCTCTCGAGCAGTTGTGCATTCATGTCATTTCCTTGGAGAGAGAACTAGAAGACTTGAAAGTCAAGAATAGGATTGCCAATGAAAGACTTCGTCTAGCAGAGTTGATGCCAGAGGACCACCGGCAAACCCCACCGCCTAGAAGTAGAAGGGCTTCCCAAGCTCCATTTTTCTCTGCATTGGATCGATAG
Click here to download the sequence:
Link to NCBI Nucleotide BLAST
>S_Transcript_188143.p1 GENE.S_Transcript_188143~~S_Transcript_188143.p1 ORF type:complete len:2968 (+),score=838.80,Kinesin|PF00225.19|1.7e-108,Kinesin-relat_1|PF12711.3|17,Kinesin-relat_1|PF12711.3|1.4e-28,Kinesin-relat_1|PF12711.3|21,Kinesin-relat_1|PF12711.3|7e+03,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|6.5e+03,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|2e+03,Kinesin-relat_1|PF12711.3|9.7e+03,Kinesin-relat_1|PF12711.3|7.9e+02,Kinesin-relat_1|PF12711.3|9.8e+03,Kinesin-relat_1|PF12711.3|6.1e+02,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|3.4e+03,Kinesin-relat_1|PF12711.3|2.8e+02,Kinesin-relat_1|PF12711.3|4.8e+03,Kinesin-relat_1|PF12711.3|3.2e+03,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|1.6e+04,Kinesin-relat_1|PF12711.3|1.2e+04,Kinesin-relat_1|PF12711.3|1.6e+04 S_Transcript_188143:208-9111(+)
MLRDLKFLRRNTGKNNNVEEIENVPINPNESNSDSISNNPTNSDTSKRGPLHGVQESAKKPKLSSVEQEASVKSKFDRTPTKPKGKNETTTLLLRTPERQGNGNVGKNRFGFSSLNECRDEGRSEMPTYSSQSSRHGNSSLNLTPRVGGAALGRANSTQSECTSTQSTPTKSVSKPPNPGFAPFSSSRHHGSARGGTYSVLSRRFSVAGGHGQPCVVNTAEVPHFDLKEDPSFWMDHNVQVILRVRPLNTFERSTHGYNRCVKQDGAQSITWVGQPETRFKFDHVACETVDQEMLFRMAALPMVENCLSGYNSCMFAYGQTGSGKTYTMLGEMDNLEFKPSPHRGMTPRIFEFLFARIRAEEESRRDERLKYSCKCSFLEIYNEQITDLLDPSSSNLLLREDVKKGVYVENLSEFEVHTVGDVLRLLIQGSSNRKVAATNMNRESSRSHSVFTCVIECKWERESTTNLRFARLNLVDLAGSERQKSSGAEGERLKEAANINKSLSTLGHVIMLLVDIAHGKPRHVPYRDSRLTFLLQDSLGGNSKTMIIANISPSICCAAETLNTLKFAQRAKLIQNNAVVNEDSSGDVAALQHQIWLLKEELSALKRQTVSRTLAFDPSSTKRGQESIETDNRSENHQPAADDMLNSDTKGSVRVSSQQLKSLESMLAGALRREQMAETSIRQLEAEIEQLNRLVGQREEDTRCTKMMLKFREEKIHRMESLLGDLKPVDAYHLEENAALSEENKLLRAKIEKNPEVTRFALENIRLLEQLRRFQDFYEEGERDILMDEVSHLRGQLIHFLDNINQPHGHTNMAQDAESNVEENQSLRSELTNTLNELAECRSKLKSCLDSNAKLNREIEDLHALLRNNEREIIMHCDIGDSMKKEVEYPSLGAQPFGAEKEEKHRIRHGPVVTHAEEVLNLELELDILKIILKEERLSRGKIEEMESCLTRDVQSAEERILKISKQCEDAKRDLTEAKAVIEALESQQLLSINEIEDLKNLNSHHLELLHKQELEISALKEQTRGQEATYSSLKHSQCEDSSLQVQLRRMQASLDKAKRLNKSYQCDHASQLSNEEEMEEICRQAEAETAEVIVCLQEELSMLQQQLQAAELREKGEEKRLLDLETKRRELQETLYMMSQDNEALQQNLQEKDREMSLLREDWELLTCEIEEALIEGHEALRTASDQLNPVSDSPSNRRHWISEQFGIMIKLFSDKEALIEELNRCLEDANSKTNELEHMLISLRGAAMVMTESHEQECYEKEKEIVQLRSELSRNVSAIGELENRMKSGHAQMRNTSDCATAAFVIVNRLSELNSSHLDALRVMDIQLKETQEANQKKDVCLDDQATAFEAAQKQIDTLGKELQVSEANCTMLSHQLDERQRHMSIMQRQIEENDEIAIAKTKQTLDDLKTGVSDVRSSINEYVEQVGCHERPSQRILSVDGFRADRVSSPLSGNQAEQETTKPGAGFDEDLEAVDPSAALNTPYKGQKDISVSKYNDLPSMKSSSDRGRRDVTISLLKKEMESAMQSLKEVQAEMVRLSAEKDEIYKSEKKSLEGTKTVKAQVLSLQAALNDFERRCENKVLDLNHKLQKVEGDAQEAKRSWWKTRESLEFEAVDAKASAAQKSVEASCLLARFEEAQDMIKEADLMINGLMIANETMKLEIEDLSKMNDTLTGERDGLIVEVQGLRSSNELKDQKCKSLEDQLELDVSETKILTEEIERLAALVQDSSEDAFMSFGHELSCMKSELQDTVKFMHSSLEEIWSEILMKDCALSVLHLCHMGVMLEAVTGLNAENGLLHHGICESNAVISNLREHNLKSKEELEMCRMLKGKLLADIKHSFDRISSKEGETTELSMKLSSFIEKLRALQHQEEMMLERSNIMSSELAFLMEEVDKSNSTVMASLSEQEKLLKSNEEVIKSEAETSAEALFSKDLELLIVASELKQLAHHHANMEKEQIICCSALNYLMKDIVTLRITVDLTEEMLLEREKEMLCLQKEVTKAKDGEARMLSQFQTLEAERNSLREYLTSKEEEKESLQNKVEELKSENCSLLEDYQVIDSEFKSSAGCIDALKLQNGKLQETIATLESRISFLQKDLEMKNAELDEYQSSQVSTTEALSKRSQDLESFAFKINELKEENLMLADELQSLKKRETEALKNSSSRFAKCVGSIEAADLQRCRMLKQLDKKIIMVTDQISQDHCINLDVLSNFLQELEYVEAKVKRLADENLSLQEELLRKDEVLNGLLFDLRLLQESAVNSKDQKDDIEELSAALDSTEQELAVRSQEFDEAVAYGETLEAKLKEQGDVLSALEMEFEKTNPSAKLLSDENLELRSQVEEITAAKTDLDRELIEKRSIIDGLENELLQMGNTLGQMNEFVESLKSNLDDVISEKDDLQKELVILEEKVETAHVLAEENEAIAAEAQEVAESRRIYAEEKEEEVKLLETSVQELDSTISVLENKVDILKGEAERQKLQREELELELQSLKNQMLNVESSDADMKRHLDEKSRNLQEALKQIKILEKDLANKDKEIAQCKAHITELTVHAEAQACEYKQKFKELESMLEQLKADEASNHDKITSSNKLEKNASKGRGSASPFKAKGSGSPFKARGSGSPFKCIGLGLSHQLKSERDEELNAERLRIEELEALAASRQKEIFMLNSRLAAAESMTHDVIRDLLGVKMDMSNYVTLLDKQQVQKITEKAQFDVKESQDQEVKKIKHQLNDFVEERQGWLEEIDRRQAELVAAQIALEKHRQQEQLLASENEVLKMENAKHKQRVIELEGEVKKLSGQQNLHQRIHHHAKIKEENNVLKIQNENLTSRLRRAESYLTRVRDELAHYRASGGRSPFVNLDEEQRLSNKLREMEKEKVHLAQTLLSLCTSILKAAGVTRPTSEINLSAAEEALEQLCIHVISLERELEDLKVKNRIANERLRLAELMPEDHRQTPPPRSRRASQAPFFSALDR*
Click here to download the sequence:
Link to NCBI Protein BLAST