Fungal Genomics

at Utrecht University

General Properties

Protein IDOphauB2|7518
Gene name
LocationContig_80:7983..10668
Strand-
Gene length (bp)2685
Transcript length (bp)2685
Coding sequence length (bp)2685
Protein length (aa) 895

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF02386 TrkH Cation transport protein 7.2E-135 375 761

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|P28584|TRK2_YEAST Low-affinity potassium transport protein OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TRK2 PE=1 SV=1 4 787 3.0E-164
sp|P12685|TRK1_YEAST High-affinity potassium transport protein OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TRK1 PE=1 SV=1 377 759 1.0E-136
sp|P28569|TRK1_SACUV High-affinity potassium transport protein OS=Saccharomyces uvarum GN=TRK1 PE=3 SV=1 377 770 8.0E-134
sp|P47946|TRK1_SCHPO Potassium transport protein 1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=trk1 PE=3 SV=2 354 776 7.0E-122
sp|Q10065|TRK2_SCHPO Potassium transport protein 2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=trk2 PE=2 SV=1 291 773 1.0E-108
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Swissprot ID Swissprot Description Start End E-value
sp|P28584|TRK2_YEAST Low-affinity potassium transport protein OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TRK2 PE=1 SV=1 4 787 3.0E-164
sp|P12685|TRK1_YEAST High-affinity potassium transport protein OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TRK1 PE=1 SV=1 377 759 1.0E-136
sp|P28569|TRK1_SACUV High-affinity potassium transport protein OS=Saccharomyces uvarum GN=TRK1 PE=3 SV=1 377 770 8.0E-134
sp|P47946|TRK1_SCHPO Potassium transport protein 1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=trk1 PE=3 SV=2 354 776 7.0E-122
sp|Q10065|TRK2_SCHPO Potassium transport protein 2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=trk2 PE=2 SV=1 291 773 1.0E-108
sp|Q54DA4|Y2412_DICDI Putative potassium transport protein DDB_G0292412 OS=Dictyostelium discoideum GN=DDB_G0292412 PE=2 SV=1 403 766 6.0E-37
sp|P47946|TRK1_SCHPO Potassium transport protein 1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=trk1 PE=3 SV=2 21 152 2.0E-24
sp|Q84TI7|HKT1_ARATH Sodium transporter HKT1 OS=Arabidopsis thaliana GN=HKT1 PE=1 SV=1 396 761 7.0E-21
sp|Q8L4K5|HKT9_ORYSJ Probable cation transporter HKT9 OS=Oryza sativa subsp. japonica GN=HKT9 PE=2 SV=1 421 715 4.0E-17
sp|Q8L481|HKT3_ORYSJ Probable cation transporter HKT3 OS=Oryza sativa subsp. japonica GN=HKT3 PE=2 SV=1 404 715 1.0E-16
sp|P28569|TRK1_SACUV High-affinity potassium transport protein OS=Saccharomyces uvarum GN=TRK1 PE=3 SV=1 24 174 1.0E-16
sp|Q6H501|HKT6_ORYSJ Probable cation transporter HKT6 OS=Oryza sativa subsp. japonica GN=HKT6 PE=2 SV=1 362 743 2.0E-16
sp|P12685|TRK1_YEAST High-affinity potassium transport protein OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TRK1 PE=1 SV=1 25 154 6.0E-16
sp|Q0D9S3|HKT1_ORYSJ Cation transporter HKT1 OS=Oryza sativa subsp. japonica GN=HKT1 PE=1 SV=1 410 750 1.0E-15
sp|A2YGP9|HKT1_ORYSI Cation transporter HKT1 OS=Oryza sativa subsp. indica GN=HKT1 PE=1 SV=2 410 750 1.0E-15
sp|Q7XPF8|HKT4_ORYSJ Cation transporter HKT4 OS=Oryza sativa subsp. japonica GN=HKT4 PE=1 SV=2 393 745 6.0E-15
sp|Q93XI5|HKT2_ORYSI Cation transporter HKT2 OS=Oryza sativa subsp. indica GN=HKT2 PE=1 SV=1 410 750 1.0E-13
sp|Q10065|TRK2_SCHPO Potassium transport protein 2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=trk2 PE=2 SV=1 28 139 5.0E-13
sp|P43440|NTPJ_ENTHA Potassium/sodium uptake protein NtpJ OS=Enterococcus hirae (strain ATCC 9790 / DSM 20160 / JCM 8729 / LMG 6399 / NBRC 3181 / NCIMB 6459 / NCDO 1258) GN=ntpJ PE=1 SV=2 453 743 6.0E-09
sp|Q7XPF7|HKT7_ORYSJ Probable cation transporter HKT7 OS=Oryza sativa subsp. japonica GN=HKT7 PE=2 SV=2 455 745 8.0E-09
sp|O31658|KTRD_BACSU Ktr system potassium uptake protein D OS=Bacillus subtilis (strain 168) GN=ktrD PE=3 SV=1 384 743 4.0E-08
sp|O87953|KTRB_VIBAL Ktr system potassium uptake protein B OS=Vibrio alginolyticus GN=ktrB PE=1 SV=1 440 743 8.0E-08
sp|A2WNZ9|HKT8_ORYSI Cation transporter HKT8 OS=Oryza sativa subsp. indica GN=HKT8 PE=2 SV=2 449 743 8.0E-08
sp|Q0JNB6|HKT8_ORYSJ Cation transporter HKT8 OS=Oryza sativa subsp. japonica GN=HKT8 PE=3 SV=1 449 743 2.0E-07
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GO

GO Term Description Terminal node
GO:0055085 transmembrane transport Yes
GO:0006812 cation transport Yes
GO:0008324 cation transmembrane transporter activity Yes
GO:0022857 transmembrane transporter activity No
GO:0009987 cellular process No
GO:0003674 molecular_function No
GO:0051179 localization No
GO:0005215 transporter activity No
GO:0015075 ion transmembrane transporter activity No
GO:0008150 biological_process No
GO:0051234 establishment of localization No
GO:0006810 transport No
GO:0006811 ion transport No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 12 0.5

Transmembrane Domains

Domain # Start End Length
1 26 48 22
2 86 108 22
3 414 436 22
4 486 508 22
5 543 565 22
6 611 628 17
7 667 684 17
8 694 716 22
9 723 740 17

Transcription Factor Class

(None)

Expression data

No expression data available for this genome

Sequences

Type of sequenceSequence
Locus Download genbank file of locus
The gene with 5 kb flanks (if sufficient flanking sequence is available). For use in cloning design programs. NOTE: features (genes or exons) that are only partially contained within the sequence are completely excluded.
Protein >OphauB2|7518
MLAFLWAQLKALKPSFLSKNPTFNYLTVHYTWIIGLTVVASIIIYLAGQGASGKVSFIDALMFASGANTQAGLNP
VDVDLLSTGQQFIIYLCAMLSNPITLGASVVFLRLSFFEKEFKSLVRQALVRRRTLTKSKSKKDLERGINARDIT
VVRSNAGPRPRMTNDGILLDDLQDTASLPVALPKGEGSASTTTSDDDQTPDNANPGNTAITFAETVKRSDGMGED
ALKLPQRRANAEHIAIVERQRNPDDEVLRIPGPRDTERGFGPRRLQFSASHKEEDNLPDTRNTEDAQPDQGEHAT
IRGRQATITIAEPDWHRHTLAAQETSSNHLERGTSAAADAQAQDDADEARSHRNIRTLTMDTIRSALTRDHLHDA
PYLSYTPTLGRNSNFVCLTREQREELGGIEYRSVRTLAWILGIYFFGFQLIILTLLLAYILNNETYGKVVENAGQ
SKVWWAIWTANVSFMDVGFTLTPDSMSSFQSSAYILIIMWFFIIIGNTGFPVMLRFLIWVASKLAPRGSALWEEL
RFLLDHPRRCFTMMFPSGPTWWLFWILVLLNGIDLLLFMVLDDGNVELGRLSVSERVVIGLFQAGSTRTAGFTAI
GLGALHPAMKILYMIMMYISVFPIAISIRRTNVYEEKSLGVYHDVDPEDDSQVSALSYVGTHLRRQLSFDLWYIF
LGLFVLAITEGTRIQKGDFGIFEILFEVVSAYGTVGLSLGVANVNASLCSQFSVVGKLIIIAMQIRGRHRGMPYG
LDRAVLLPSKARLRKDLEEDEAMMARINSSTFKSFGKSSGLQRQGTIRSIGGRSTDRTNGNLISQLLHPGPVVNH
DMEVLPRRKSTDSNASAPVAKGYAEPMAEDEAGEAKMRPSADISGFRHRRSETTWTNPWRQSVVSNLHE*
Coding >OphauB2|7518
ATGCTGGCCTTTCTTTGGGCTCAGCTCAAGGCCCTCAAACCGTCATTCTTATCGAAAAACCCCACCTTCAACTAC
CTCACGGTGCACTACACCTGGATTATTGGTCTCACCGTAGTGGCCTCCATCATCATCTATTTGGCGGGCCAGGGT
GCCAGCGGCAAAGTATCCTTTATCGATGCTCTCATGTTTGCCAGCGGAGCCAATACCCAGGCTGGTCTCAACCCC
GTCGATGTTGATCTTCTCAGCACTGGCCAGCAATTCATCATTTATCTCTGCGCAATGCTCTCGAATCCCATCACC
CTTGGCGCCAGTGTTGTTTTCCTCCGACTTTCATTCTTTGAAAAGGAATTCAAATCGCTGGTTCGTCAAGCCCTG
GTGCGACGAAGAACATTGACCAAATCCAAGTCGAAAAAGGACTTGGAACGCGGCATAAATGCTCGGGACATTACT
GTTGTTCGTTCTAATGCGGGCCCTCGACCTCGCATGACCAACGATGGCATCCTACTCGACGACTTGCAGGACACA
GCATCTCTGCCCGTAGCACTGCCCAAGGGTGAAGGAAGTGCTTCTACGACAACGTCGGACGACGACCAAACTCCC
GACAATGCCAATCCAGGCAATACAGCAATCACATTTGCCGAAACAGTCAAGCGAAGTGATGGAATGGGCGAAGAT
GCCCTTAAACTCCCACAACGCCGTGCAAATGCTGAACACATTGCCATCGTGGAGCGTCAGCGAAATCCCGACGAC
GAGGTGCTTCGCATTCCTGGTCCGCGAGACACGGAAAGGGGCTTTGGTCCCAGGAGACTTCAGTTCAGTGCAAGC
CACAAGGAGGAGGACAACTTGCCTGATACACGCAATACTGAGGACGCGCAGCCCGACCAGGGCGAGCACGCCACT
ATTCGCGGACGGCAGGCCACCATTACTATTGCCGAGCCCGATTGGCATCGACACACTCTGGCAGCCCAAGAAACA
TCGTCCAACCATCTCGAGCGCGGCACCTCGGCTGCGGCTGATGCCCAGGCGCAAGATGACGCCGACGAGGCTAGG
TCGCACCGGAACATTAGAACCCTCACCATGGATACTATTCGTTCTGCCCTGACGCGTGATCACCTGCACGACGCT
CCCTACCTGTCATACACGCCCACATTGGGCCGAAACTCCAACTTTGTTTGCCTCACCCGTGAACAGAGAGAAGAG
CTTGGCGGTATCGAGTATCGCTCTGTGCGAACCTTGGCATGGATCCTTGGTATCTACTTCTTTGGATTCCAACTC
ATCATTCTCACCTTGCTCCTCGCTTATATTCTTAACAACGAGACGTACGGCAAGGTGGTGGAGAATGCTGGTCAA
TCCAAGGTTTGGTGGGCTATTTGGACAGCCAATGTCTCCTTCATGGACGTTGGCTTTACTCTTACCCCAGACAGC
ATGAGTTCTTTCCAGTCGTCTGCATACATCCTCATCATCATGTGGTTCTTCATCATTATCGGCAACACTGGTTTC
CCAGTCATGCTTCGCTTCCTCATCTGGGTCGCAAGCAAACTTGCCCCGCGTGGATCAGCATTGTGGGAGGAACTT
CGTTTCTTGCTTGATCATCCACGCCGATGCTTCACCATGATGTTTCCATCAGGCCCAACCTGGTGGTTGTTTTGG
ATTCTGGTGCTCCTCAACGGAATTGACCTCCTTCTCTTCATGGTCCTGGACGACGGTAATGTTGAACTTGGCCGC
CTCTCAGTGAGTGAGCGAGTCGTTATTGGCCTCTTCCAGGCAGGCTCGACTCGAACAGCTGGCTTCACCGCTATT
GGCCTTGGAGCTCTTCATCCCGCAATGAAGATTTTGTACATGATTATGATGTACATCTCGGTTTTCCCCATTGCC
ATCTCGATTCGACGCACCAATGTTTACGAGGAAAAGTCGCTTGGTGTTTATCACGACGTGGACCCTGAGGACGAC
TCTCAAGTCAGCGCCCTCTCATATGTCGGTACTCACTTGCGGCGACAGTTGTCGTTTGACTTGTGGTACATCTTT
TTGGGACTGTTTGTGCTCGCTATTACAGAGGGTACCAGGATCCAGAAGGGCGACTTTGGCATTTTTGAGATCCTC
TTCGAAGTTGTGAGTGCATATGGCACGGTGGGCCTGAGCTTGGGAGTGGCAAATGTCAATGCCTCACTCTGCTCA
CAGTTCTCTGTTGTTGGCAAGCTCATAATCATTGCCATGCAGATTCGTGGCAGACACCGCGGCATGCCCTATGGC
TTGGATCGCGCTGTTTTGCTGCCCAGCAAGGCCCGTCTTCGCAAAGATCTCGAAGAAGACGAGGCAATGATGGCG
CGCATAAACAGTTCCACATTCAAGTCTTTCGGCAAGTCGAGTGGACTTCAGAGACAGGGCACCATCAGGTCCATT
GGGGGAAGGAGCACAGATCGGACTAATGGCAATCTGATCTCGCAACTACTCCATCCCGGTCCTGTTGTTAACCAC
GACATGGAAGTTTTGCCGCGACGCAAGTCGACAGACTCGAATGCCAGTGCTCCGGTGGCTAAGGGCTACGCGGAA
CCCATGGCTGAAGACGAGGCTGGTGAAGCCAAGATGCGCCCCAGCGCAGACATTTCAGGATTTAGGCATCGACGA
TCCGAGACGACATGGACCAATCCCTGGCGACAGAGTGTCGTTAGCAACCTTCACGAATAA
Transcript >OphauB2|7518
ATGCTGGCCTTTCTTTGGGCTCAGCTCAAGGCCCTCAAACCGTCATTCTTATCGAAAAACCCCACCTTCAACTAC
CTCACGGTGCACTACACCTGGATTATTGGTCTCACCGTAGTGGCCTCCATCATCATCTATTTGGCGGGCCAGGGT
GCCAGCGGCAAAGTATCCTTTATCGATGCTCTCATGTTTGCCAGCGGAGCCAATACCCAGGCTGGTCTCAACCCC
GTCGATGTTGATCTTCTCAGCACTGGCCAGCAATTCATCATTTATCTCTGCGCAATGCTCTCGAATCCCATCACC
CTTGGCGCCAGTGTTGTTTTCCTCCGACTTTCATTCTTTGAAAAGGAATTCAAATCGCTGGTTCGTCAAGCCCTG
GTGCGACGAAGAACATTGACCAAATCCAAGTCGAAAAAGGACTTGGAACGCGGCATAAATGCTCGGGACATTACT
GTTGTTCGTTCTAATGCGGGCCCTCGACCTCGCATGACCAACGATGGCATCCTACTCGACGACTTGCAGGACACA
GCATCTCTGCCCGTAGCACTGCCCAAGGGTGAAGGAAGTGCTTCTACGACAACGTCGGACGACGACCAAACTCCC
GACAATGCCAATCCAGGCAATACAGCAATCACATTTGCCGAAACAGTCAAGCGAAGTGATGGAATGGGCGAAGAT
GCCCTTAAACTCCCACAACGCCGTGCAAATGCTGAACACATTGCCATCGTGGAGCGTCAGCGAAATCCCGACGAC
GAGGTGCTTCGCATTCCTGGTCCGCGAGACACGGAAAGGGGCTTTGGTCCCAGGAGACTTCAGTTCAGTGCAAGC
CACAAGGAGGAGGACAACTTGCCTGATACACGCAATACTGAGGACGCGCAGCCCGACCAGGGCGAGCACGCCACT
ATTCGCGGACGGCAGGCCACCATTACTATTGCCGAGCCCGATTGGCATCGACACACTCTGGCAGCCCAAGAAACA
TCGTCCAACCATCTCGAGCGCGGCACCTCGGCTGCGGCTGATGCCCAGGCGCAAGATGACGCCGACGAGGCTAGG
TCGCACCGGAACATTAGAACCCTCACCATGGATACTATTCGTTCTGCCCTGACGCGTGATCACCTGCACGACGCT
CCCTACCTGTCATACACGCCCACATTGGGCCGAAACTCCAACTTTGTTTGCCTCACCCGTGAACAGAGAGAAGAG
CTTGGCGGTATCGAGTATCGCTCTGTGCGAACCTTGGCATGGATCCTTGGTATCTACTTCTTTGGATTCCAACTC
ATCATTCTCACCTTGCTCCTCGCTTATATTCTTAACAACGAGACGTACGGCAAGGTGGTGGAGAATGCTGGTCAA
TCCAAGGTTTGGTGGGCTATTTGGACAGCCAATGTCTCCTTCATGGACGTTGGCTTTACTCTTACCCCAGACAGC
ATGAGTTCTTTCCAGTCGTCTGCATACATCCTCATCATCATGTGGTTCTTCATCATTATCGGCAACACTGGTTTC
CCAGTCATGCTTCGCTTCCTCATCTGGGTCGCAAGCAAACTTGCCCCGCGTGGATCAGCATTGTGGGAGGAACTT
CGTTTCTTGCTTGATCATCCACGCCGATGCTTCACCATGATGTTTCCATCAGGCCCAACCTGGTGGTTGTTTTGG
ATTCTGGTGCTCCTCAACGGAATTGACCTCCTTCTCTTCATGGTCCTGGACGACGGTAATGTTGAACTTGGCCGC
CTCTCAGTGAGTGAGCGAGTCGTTATTGGCCTCTTCCAGGCAGGCTCGACTCGAACAGCTGGCTTCACCGCTATT
GGCCTTGGAGCTCTTCATCCCGCAATGAAGATTTTGTACATGATTATGATGTACATCTCGGTTTTCCCCATTGCC
ATCTCGATTCGACGCACCAATGTTTACGAGGAAAAGTCGCTTGGTGTTTATCACGACGTGGACCCTGAGGACGAC
TCTCAAGTCAGCGCCCTCTCATATGTCGGTACTCACTTGCGGCGACAGTTGTCGTTTGACTTGTGGTACATCTTT
TTGGGACTGTTTGTGCTCGCTATTACAGAGGGTACCAGGATCCAGAAGGGCGACTTTGGCATTTTTGAGATCCTC
TTCGAAGTTGTGAGTGCATATGGCACGGTGGGCCTGAGCTTGGGAGTGGCAAATGTCAATGCCTCACTCTGCTCA
CAGTTCTCTGTTGTTGGCAAGCTCATAATCATTGCCATGCAGATTCGTGGCAGACACCGCGGCATGCCCTATGGC
TTGGATCGCGCTGTTTTGCTGCCCAGCAAGGCCCGTCTTCGCAAAGATCTCGAAGAAGACGAGGCAATGATGGCG
CGCATAAACAGTTCCACATTCAAGTCTTTCGGCAAGTCGAGTGGACTTCAGAGACAGGGCACCATCAGGTCCATT
GGGGGAAGGAGCACAGATCGGACTAATGGCAATCTGATCTCGCAACTACTCCATCCCGGTCCTGTTGTTAACCAC
GACATGGAAGTTTTGCCGCGACGCAAGTCGACAGACTCGAATGCCAGTGCTCCGGTGGCTAAGGGCTACGCGGAA
CCCATGGCTGAAGACGAGGCTGGTGAAGCCAAGATGCGCCCCAGCGCAGACATTTCAGGATTTAGGCATCGACGA
TCCGAGACGACATGGACCAATCCCTGGCGACAGAGTGTCGTTAGCAACCTTCACGAATAA
Gene >OphauB2|7518
ATGCTGGCCTTTCTTTGGGCTCAGCTCAAGGCCCTCAAACCGTCATTCTTATCGAAAAACCCCACCTTCAACTAC
CTCACGGTGCACTACACCTGGATTATTGGTCTCACCGTAGTGGCCTCCATCATCATCTATTTGGCGGGCCAGGGT
GCCAGCGGCAAAGTATCCTTTATCGATGCTCTCATGTTTGCCAGCGGAGCCAATACCCAGGCTGGTCTCAACCCC
GTCGATGTTGATCTTCTCAGCACTGGCCAGCAATTCATCATTTATCTCTGCGCAATGCTCTCGAATCCCATCACC
CTTGGCGCCAGTGTTGTTTTCCTCCGACTTTCATTCTTTGAAAAGGAATTCAAATCGCTGGTTCGTCAAGCCCTG
GTGCGACGAAGAACATTGACCAAATCCAAGTCGAAAAAGGACTTGGAACGCGGCATAAATGCTCGGGACATTACT
GTTGTTCGTTCTAATGCGGGCCCTCGACCTCGCATGACCAACGATGGCATCCTACTCGACGACTTGCAGGACACA
GCATCTCTGCCCGTAGCACTGCCCAAGGGTGAAGGAAGTGCTTCTACGACAACGTCGGACGACGACCAAACTCCC
GACAATGCCAATCCAGGCAATACAGCAATCACATTTGCCGAAACAGTCAAGCGAAGTGATGGAATGGGCGAAGAT
GCCCTTAAACTCCCACAACGCCGTGCAAATGCTGAACACATTGCCATCGTGGAGCGTCAGCGAAATCCCGACGAC
GAGGTGCTTCGCATTCCTGGTCCGCGAGACACGGAAAGGGGCTTTGGTCCCAGGAGACTTCAGTTCAGTGCAAGC
CACAAGGAGGAGGACAACTTGCCTGATACACGCAATACTGAGGACGCGCAGCCCGACCAGGGCGAGCACGCCACT
ATTCGCGGACGGCAGGCCACCATTACTATTGCCGAGCCCGATTGGCATCGACACACTCTGGCAGCCCAAGAAACA
TCGTCCAACCATCTCGAGCGCGGCACCTCGGCTGCGGCTGATGCCCAGGCGCAAGATGACGCCGACGAGGCTAGG
TCGCACCGGAACATTAGAACCCTCACCATGGATACTATTCGTTCTGCCCTGACGCGTGATCACCTGCACGACGCT
CCCTACCTGTCATACACGCCCACATTGGGCCGAAACTCCAACTTTGTTTGCCTCACCCGTGAACAGAGAGAAGAG
CTTGGCGGTATCGAGTATCGCTCTGTGCGAACCTTGGCATGGATCCTTGGTATCTACTTCTTTGGATTCCAACTC
ATCATTCTCACCTTGCTCCTCGCTTATATTCTTAACAACGAGACGTACGGCAAGGTGGTGGAGAATGCTGGTCAA
TCCAAGGTTTGGTGGGCTATTTGGACAGCCAATGTCTCCTTCATGGACGTTGGCTTTACTCTTACCCCAGACAGC
ATGAGTTCTTTCCAGTCGTCTGCATACATCCTCATCATCATGTGGTTCTTCATCATTATCGGCAACACTGGTTTC
CCAGTCATGCTTCGCTTCCTCATCTGGGTCGCAAGCAAACTTGCCCCGCGTGGATCAGCATTGTGGGAGGAACTT
CGTTTCTTGCTTGATCATCCACGCCGATGCTTCACCATGATGTTTCCATCAGGCCCAACCTGGTGGTTGTTTTGG
ATTCTGGTGCTCCTCAACGGAATTGACCTCCTTCTCTTCATGGTCCTGGACGACGGTAATGTTGAACTTGGCCGC
CTCTCAGTGAGTGAGCGAGTCGTTATTGGCCTCTTCCAGGCAGGCTCGACTCGAACAGCTGGCTTCACCGCTATT
GGCCTTGGAGCTCTTCATCCCGCAATGAAGATTTTGTACATGATTATGATGTACATCTCGGTTTTCCCCATTGCC
ATCTCGATTCGACGCACCAATGTTTACGAGGAAAAGTCGCTTGGTGTTTATCACGACGTGGACCCTGAGGACGAC
TCTCAAGTCAGCGCCCTCTCATATGTCGGTACTCACTTGCGGCGACAGTTGTCGTTTGACTTGTGGTACATCTTT
TTGGGACTGTTTGTGCTCGCTATTACAGAGGGTACCAGGATCCAGAAGGGCGACTTTGGCATTTTTGAGATCCTC
TTCGAAGTTGTGAGTGCATATGGCACGGTGGGCCTGAGCTTGGGAGTGGCAAATGTCAATGCCTCACTCTGCTCA
CAGTTCTCTGTTGTTGGCAAGCTCATAATCATTGCCATGCAGATTCGTGGCAGACACCGCGGCATGCCCTATGGC
TTGGATCGCGCTGTTTTGCTGCCCAGCAAGGCCCGTCTTCGCAAAGATCTCGAAGAAGACGAGGCAATGATGGCG
CGCATAAACAGTTCCACATTCAAGTCTTTCGGCAAGTCGAGTGGACTTCAGAGACAGGGCACCATCAGGTCCATT
GGGGGAAGGAGCACAGATCGGACTAATGGCAATCTGATCTCGCAACTACTCCATCCCGGTCCTGTTGTTAACCAC
GACATGGAAGTTTTGCCGCGACGCAAGTCGACAGACTCGAATGCCAGTGCTCCGGTGGCTAAGGGCTACGCGGAA
CCCATGGCTGAAGACGAGGCTGGTGAAGCCAAGATGCGCCCCAGCGCAGACATTTCAGGATTTAGGCATCGACGA
TCCGAGACGACATGGACCAATCCCTGGCGACAGAGTGTCGTTAGCAACCTTCACGAATAA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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