Fungal Genomics

at Utrecht University

General Properties

Protein IDAni_SJS100_1|g621.t1
Gene name
Locationscaffold_002:537417..540397
Strand+
Gene length (bp)2980
Transcript length (bp)2697
Coding sequence length (bp)2697
Protein length (aa) 899

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00493 MCM MCM P-loop domain 2.0E-100 474 696
PF17207 MCM_OB MCM OB domain 3.0E-38 307 433
PF12619 MCM2_N Mini-chromosome maintenance protein 2 2.4E-33 59 194
PF17855 MCM_lid MCM AAA-lid domain 2.1E-24 763 846
PF14551 MCM_N MCM N-terminal domain 2.7E-12 210 299
PF01078 Mg_chelatase Magnesium chelatase, subunit ChlI 1.1E-06 584 673
PF07728 AAA_5 AAA domain (dynein-related subfamily) 3.9E-05 531 652

GO

GO Term Description Terminal node
GO:0005524 ATP binding Yes
GO:0006270 DNA replication initiation Yes
GO:0032508 DNA duplex unwinding Yes
GO:0016887 ATP hydrolysis activity Yes
GO:0003677 DNA binding Yes
GO:0005634 nucleus Yes
GO:0042555 MCM complex Yes
GO:1905775 negative regulation of DNA helicase activity Yes
GO:0043168 anion binding No
GO:0009987 cellular process No
GO:0035639 purine ribonucleoside triphosphate binding No
GO:0008152 metabolic process No
GO:0016817 hydrolase activity, acting on acid anhydrides No
GO:0048523 negative regulation of cellular process No
GO:2001251 negative regulation of chromosome organization No
GO:0030554 adenyl nucleotide binding No
GO:0034641 cellular nitrogen compound metabolic process No
GO:0016787 hydrolase activity No
GO:0008150 biological_process No
GO:0003824 catalytic activity No
GO:0051097 negative regulation of helicase activity No
GO:0005488 binding No
GO:0044260 cellular macromolecule metabolic process No
GO:0051128 regulation of cellular component organization No
GO:0046483 heterocycle metabolic process No
GO:0017111 nucleoside-triphosphatase activity No
GO:1901360 organic cyclic compound metabolic process No
GO:0051276 chromosome organization No
GO:0050789 regulation of biological process No
GO:0071840 cellular component organization or biogenesis No
GO:0050790 regulation of catalytic activity No
GO:0006259 DNA metabolic process No
GO:0016043 cellular component organization No
GO:0006807 nitrogen compound metabolic process No
GO:0043226 organelle No
GO:0033043 regulation of organelle organization No
GO:0051095 regulation of helicase activity No
GO:1905463 negative regulation of DNA duplex unwinding No
GO:0003676 nucleic acid binding No
GO:0000166 nucleotide binding No
GO:0071704 organic substance metabolic process No
GO:0010639 negative regulation of organelle organization No
GO:0003674 molecular_function No
GO:0032991 protein-containing complex No
GO:0006996 organelle organization No
GO:0016462 pyrophosphatase activity No
GO:0090304 nucleic acid metabolic process No
GO:0043167 ion binding No
GO:0051129 negative regulation of cellular component organization No
GO:0043170 macromolecule metabolic process No
GO:0032555 purine ribonucleotide binding No
GO:1905462 regulation of DNA duplex unwinding No
GO:0044238 primary metabolic process No
GO:0032780 negative regulation of ATP-dependent activity No
GO:1905774 regulation of DNA helicase activity No
GO:0016818 hydrolase activity, acting on acid anhydrides, in phosphorus-containing anhydrides No
GO:0036094 small molecule binding No
GO:1901265 nucleoside phosphate binding No
GO:0110165 cellular anatomical entity No
GO:0044237 cellular metabolic process No
GO:0006725 cellular aromatic compound metabolic process No
GO:0006139 nucleobase-containing compound metabolic process No
GO:0044092 negative regulation of molecular function No
GO:0043231 intracellular membrane-bounded organelle No
GO:0032392 DNA geometric change No
GO:0048519 negative regulation of biological process No
GO:0097367 carbohydrate derivative binding No
GO:0065007 biological regulation No
GO:0017076 purine nucleotide binding No
GO:0032553 ribonucleotide binding No
GO:1901363 heterocyclic compound binding No
GO:0050794 regulation of cellular process No
GO:0065009 regulation of molecular function No
GO:0071103 DNA conformation change No
GO:0043227 membrane-bounded organelle No
GO:0043462 regulation of ATP-dependent activity No
GO:0043086 negative regulation of catalytic activity No
GO:0033044 regulation of chromosome organization No
GO:0043229 intracellular organelle No
GO:0005575 cellular_component No
GO:0097159 organic cyclic compound binding No
GO:0032559 adenyl ribonucleotide binding No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 11 0.45

Transmembrane Domains

(None)

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 >Ani_SJS100_1|g621.t1
MSSPLRPSNSAANRGLGNLGRRKRSREPDDETSSVVPPSSPPPSSPPMLPFDDDDNERDEEAELLGDIDDIDEMA
EDEDGIDLFGDNFEKDYRSTADDQYRGEYIDDDGDHEELDIATRRQLEARMNKRDRELERRRRMPAAFLQDDEDG
DLDLTRQPRRRRHHYDEDRDDVEMGDDAMEELSLEELTDVKASNLTDWVLQPQVLRSIYREFKSFLTEYTDPAGA
SVYGNKIKTLGEVNSASLEVSYAHLLETKAALAYFLANEPTEVLKVFDQVALDVTLFHYPQYHDIHNEIHVRITD
LPVSYTLRQLRQSHLNCLIRVSGVVTRRTGVFPQLKYVMFVCGKCNITLGPFQQEASAEVKISYCQNCQSKGPFS
VHSEKTVYRNYQKLTLQESPGSVPAGRLPRQREVVLLADLIDSAKPGDEIEVTGIYRNSYDAQLNNKNGFPVFAT
IIEANHVVKSHDQLAGFHLTEDDEREIRALSRDPEIVDKIVRSVAPSIYGHLDVKTAIALSLFGGVSKEAQGKMS
IRGDINVLLLGDPGTAKSQFLKYTEKTAHRAVFATGQGASAVGLTASVRRDPLTSEWTLEGGALVLADRGTCLID
EFDKMNDQDRTSIHEAMEQQTISISKAGIVTTLQARCAVVAAANPIGGRYNSSAPFSENVQLTEPILSRFDILCV
VRDLVDPSEDERLANFVIESHHRANPARPLRDQDGNLINADGHPIDEDGYRIDKKTKQRLPLTDEELATRDAEKQ
RREDEKDGEIPQELLRKYILYARERCHPKLYQIDQDKIARLFADMRRESLATGAYPITVRHLEAIMRIAESFCKM
RLSEYCSAQDIDRAIAVTVDSFIGSQKISCKKALSRAFAKYTLSRPKPQSKRRAGIPAPDPFKPRMQSSTRAR*
Coding >Ani_SJS100_1|g621.t1
ATGAGTTCACCACTCCGTCCCAGCAATTCTGCTGCAAACCGCGGCCTAGGGAACCTGGGTCGCCGTAAGAGATCC
AGAGAGCCCGATGATGAGACCTCATCGGTTGTTCCCCCCTCAAGTCCCCCCCCTTCTTCCCCTCCCATGCTTCCT
TTCGACGACGATGACAACGAGCGCGATGAGGAAGCAGAGCTCCTGGGTGACATTGATGATATCGATGAGATGGCT
GAAGACGAGGACGGAATCGATCTGTTTGGAGACAACTTCGAGAAAGATTATCGAAGCACAGCAGACGACCAGTAC
AGAGGAGAATACATCGACGATGACGGCGACCATGAGGAACTCGATATCGCAACTCGTCGTCAACTCGAAGCCCGC
ATGAACAAGAGAGACCGTGAACTCGAACGTCGCCGTCGCATGCCTGCGGCTTTCTTGCAGGATGACGAAGATGGT
GACTTAGATCTCACTCGTCAACCCCGTCGCCGGAGACACCACTACGATGAAGATCGGGACGACGTCGAGATGGGT
GATGATGCCATGGAAGAGCTCTCCCTGGAGGAGTTGACTGATGTCAAGGCTTCTAACCTTACGGACTGGGTCCTG
CAGCCCCAAGTCCTTCGCTCCATCTACCGAGAATTCAAGTCCTTCTTGACAGAGTACACCGACCCTGCCGGTGCT
TCGGTCTACGGAAACAAGATCAAGACCCTTGGTGAGGTGAACTCGGCATCCCTCGAAGTCTCTTACGCCCATCTA
CTGGAAACAAAAGCGGCTCTTGCATACTTCCTGGCCAACGAGCCCACTGAAGTGCTGAAAGTTTTCGACCAAGTC
GCTCTTGATGTCACTCTCTTCCACTACCCTCAATACCACGATATTCACAACGAAATTCATGTCCGCATTACCGAT
CTCCCTGTCTCCTATACCCTTCGTCAACTCCGCCAGTCCCATCTCAACTGCCTTATCCGCGTCAGCGGTGTTGTT
ACTCGCCGTACCGGTGTCTTCCCGCAATTGAAATATGTCATGTTCGTTTGCGGAAAGTGTAACATCACTCTTGGT
CCCTTCCAGCAGGAAGCCAGTGCGGAAGTGAAGATCTCGTACTGCCAGAACTGCCAGTCGAAGGGACCTTTCTCT
GTGCACTCGGAAAAGACCGTTTACCGGAACTACCAGAAACTCACTCTCCAAGAATCTCCGGGCTCCGTCCCTGCC
GGTCGACTTCCCCGCCAGCGCGAGGTCGTTCTTCTCGCTGATCTCATTGATTCAGCCAAGCCAGGTGATGAAATC
GAGGTGACGGGAATCTACCGGAACAGCTACGATGCGCAGCTCAACAACAAGAACGGCTTCCCTGTGTTCGCCACG
ATTATTGAGGCCAACCATGTCGTCAAGTCCCACGACCAGCTGGCTGGTTTCCACTTGACCGAAGATGATGAGCGC
GAGATTCGGGCCCTGTCCAGGGACCCTGAGATTGTCGATAAGATTGTTCGCTCCGTTGCCCCTAGTATCTACGGC
CACCTGGACGTCAAGACCGCCATCGCCCTATCTCTCTTCGGTGGTGTCAGCAAAGAAGCCCAAGGCAAGATGTCC
ATTCGTGGAGATATCAACGTCCTCCTTCTGGGTGACCCCGGTACCGCGAAGTCCCAGTTCCTCAAATACACCGAG
AAGACTGCCCACAGAGCCGTCTTCGCCACCGGTCAGGGTGCCAGTGCCGTCGGTCTGACAGCCAGCGTCCGTCGC
GATCCCCTCACCAGCGAATGGACCCTCGAAGGAGGAGCCCTCGTTCTTGCAGACCGCGGTACCTGCTTGATCGAT
GAGTTCGACAAGATGAACGACCAGGACCGTACTTCCATCCACGAAGCCATGGAACAACAGACCATCTCCATCTCC
AAGGCCGGTATCGTGACCACCCTGCAGGCTCGTTGTGCTGTTGTTGCCGCCGCCAACCCCATCGGCGGCCGTTAC
AACAGCAGCGCACCCTTCTCCGAGAACGTCCAACTCACCGAACCCATCCTGTCCCGTTTCGACATCCTCTGCGTC
GTCCGCGATCTGGTTGACCCAAGCGAGGATGAACGCCTCGCCAACTTCGTCATCGAATCCCACCACCGCGCCAAC
CCGGCCCGTCCCCTTCGTGACCAAGACGGCAACCTGATCAACGCAGATGGACACCCCATCGACGAAGATGGCTAC
CGTATTGACAAGAAGACCAAGCAACGCCTGCCCCTGACCGACGAAGAACTCGCTACCCGGGATGCCGAGAAGCAA
CGACGCGAAGACGAGAAAGACGGCGAAATCCCTCAAGAACTTCTTCGCAAATACATCCTCTACGCCCGTGAACGC
TGCCACCCCAAGCTCTACCAGATCGACCAAGACAAGATCGCCCGTCTATTCGCCGATATGAGACGCGAATCTCTG
GCCACCGGCGCTTACCCCATCACTGTTCGTCACCTCGAAGCCATCATGCGTATCGCCGAATCTTTCTGCAAGATG
CGACTCTCAGAATACTGCTCCGCACAGGACATCGACCGTGCCATCGCCGTCACCGTCGACTCCTTCATCGGTAGC
CAGAAAATCAGCTGCAAGAAGGCTCTGTCCAGGGCATTTGCTAAATACACACTCTCCCGCCCCAAGCCCCAATCC
AAGCGGAGAGCAGGCATTCCCGCCCCTGATCCGTTCAAGCCGCGCATGCAGTCTTCTACTAGGGCGCGGTAA
Transcript >Ani_SJS100_1|g621.t1
ATGAGTTCACCACTCCGTCCCAGCAATTCTGCTGCAAACCGCGGCCTAGGGAACCTGGGTCGCCGTAAGAGATCC
AGAGAGCCCGATGATGAGACCTCATCGGTTGTTCCCCCCTCAAGTCCCCCCCCTTCTTCCCCTCCCATGCTTCCT
TTCGACGACGATGACAACGAGCGCGATGAGGAAGCAGAGCTCCTGGGTGACATTGATGATATCGATGAGATGGCT
GAAGACGAGGACGGAATCGATCTGTTTGGAGACAACTTCGAGAAAGATTATCGAAGCACAGCAGACGACCAGTAC
AGAGGAGAATACATCGACGATGACGGCGACCATGAGGAACTCGATATCGCAACTCGTCGTCAACTCGAAGCCCGC
ATGAACAAGAGAGACCGTGAACTCGAACGTCGCCGTCGCATGCCTGCGGCTTTCTTGCAGGATGACGAAGATGGT
GACTTAGATCTCACTCGTCAACCCCGTCGCCGGAGACACCACTACGATGAAGATCGGGACGACGTCGAGATGGGT
GATGATGCCATGGAAGAGCTCTCCCTGGAGGAGTTGACTGATGTCAAGGCTTCTAACCTTACGGACTGGGTCCTG
CAGCCCCAAGTCCTTCGCTCCATCTACCGAGAATTCAAGTCCTTCTTGACAGAGTACACCGACCCTGCCGGTGCT
TCGGTCTACGGAAACAAGATCAAGACCCTTGGTGAGGTGAACTCGGCATCCCTCGAAGTCTCTTACGCCCATCTA
CTGGAAACAAAAGCGGCTCTTGCATACTTCCTGGCCAACGAGCCCACTGAAGTGCTGAAAGTTTTCGACCAAGTC
GCTCTTGATGTCACTCTCTTCCACTACCCTCAATACCACGATATTCACAACGAAATTCATGTCCGCATTACCGAT
CTCCCTGTCTCCTATACCCTTCGTCAACTCCGCCAGTCCCATCTCAACTGCCTTATCCGCGTCAGCGGTGTTGTT
ACTCGCCGTACCGGTGTCTTCCCGCAATTGAAATATGTCATGTTCGTTTGCGGAAAGTGTAACATCACTCTTGGT
CCCTTCCAGCAGGAAGCCAGTGCGGAAGTGAAGATCTCGTACTGCCAGAACTGCCAGTCGAAGGGACCTTTCTCT
GTGCACTCGGAAAAGACCGTTTACCGGAACTACCAGAAACTCACTCTCCAAGAATCTCCGGGCTCCGTCCCTGCC
GGTCGACTTCCCCGCCAGCGCGAGGTCGTTCTTCTCGCTGATCTCATTGATTCAGCCAAGCCAGGTGATGAAATC
GAGGTGACGGGAATCTACCGGAACAGCTACGATGCGCAGCTCAACAACAAGAACGGCTTCCCTGTGTTCGCCACG
ATTATTGAGGCCAACCATGTCGTCAAGTCCCACGACCAGCTGGCTGGTTTCCACTTGACCGAAGATGATGAGCGC
GAGATTCGGGCCCTGTCCAGGGACCCTGAGATTGTCGATAAGATTGTTCGCTCCGTTGCCCCTAGTATCTACGGC
CACCTGGACGTCAAGACCGCCATCGCCCTATCTCTCTTCGGTGGTGTCAGCAAAGAAGCCCAAGGCAAGATGTCC
ATTCGTGGAGATATCAACGTCCTCCTTCTGGGTGACCCCGGTACCGCGAAGTCCCAGTTCCTCAAATACACCGAG
AAGACTGCCCACAGAGCCGTCTTCGCCACCGGTCAGGGTGCCAGTGCCGTCGGTCTGACAGCCAGCGTCCGTCGC
GATCCCCTCACCAGCGAATGGACCCTCGAAGGAGGAGCCCTCGTTCTTGCAGACCGCGGTACCTGCTTGATCGAT
GAGTTCGACAAGATGAACGACCAGGACCGTACTTCCATCCACGAAGCCATGGAACAACAGACCATCTCCATCTCC
AAGGCCGGTATCGTGACCACCCTGCAGGCTCGTTGTGCTGTTGTTGCCGCCGCCAACCCCATCGGCGGCCGTTAC
AACAGCAGCGCACCCTTCTCCGAGAACGTCCAACTCACCGAACCCATCCTGTCCCGTTTCGACATCCTCTGCGTC
GTCCGCGATCTGGTTGACCCAAGCGAGGATGAACGCCTCGCCAACTTCGTCATCGAATCCCACCACCGCGCCAAC
CCGGCCCGTCCCCTTCGTGACCAAGACGGCAACCTGATCAACGCAGATGGACACCCCATCGACGAAGATGGCTAC
CGTATTGACAAGAAGACCAAGCAACGCCTGCCCCTGACCGACGAAGAACTCGCTACCCGGGATGCCGAGAAGCAA
CGACGCGAAGACGAGAAAGACGGCGAAATCCCTCAAGAACTTCTTCGCAAATACATCCTCTACGCCCGTGAACGC
TGCCACCCCAAGCTCTACCAGATCGACCAAGACAAGATCGCCCGTCTATTCGCCGATATGAGACGCGAATCTCTG
GCCACCGGCGCTTACCCCATCACTGTTCGTCACCTCGAAGCCATCATGCGTATCGCCGAATCTTTCTGCAAGATG
CGACTCTCAGAATACTGCTCCGCACAGGACATCGACCGTGCCATCGCCGTCACCGTCGACTCCTTCATCGGTAGC
CAGAAAATCAGCTGCAAGAAGGCTCTGTCCAGGGCATTTGCTAAATACACACTCTCCCGCCCCAAGCCCCAATCC
AAGCGGAGAGCAGGCATTCCCGCCCCTGATCCGTTCAAGCCGCGCATGCAGTCTTCTACTAGGGCGCGGTAA
Gene >Ani_SJS100_1|g621.t1
ATGAGGTATGTAATGTCCTCACCATTCATTGTCAATGTTGCTTGGAACTACCTCGTTTGGTTGCCCCTCAAAACA
CTCGGAATACTAATAATGTCTTCTCAGTTCACCACTCCGTCCCAGCAATTCTGCTGCAAACCGCGGCCTAGGGAA
CCTGGGTCGCCGTAAGAGATCCAGAGAGCCCGATGATGAGACCTCATCGGTTGTTCCCCCCTCAAGTCGTAAGTC
ATGCTGTGGTGAATGGCTGGTTCCTGATACTAACGCTGGCGATAGCCCCCCCTTCTTCCCCTCCCATGCTTCCTT
TCGACGACGATGACAACGAGCGCGATGAGGAAGCAGAGCTCCTGGGTGACATTGATGATATCGATGAGATGGCTG
AAGACGAGGACGGAATCGATCTGTTTGGAGACAACTTCGAGAAAGATTATCGAAGCACAGCAGACGACCAGTACA
GAGGAGAATACATCGACGATGACGGCGACCATGAGGAACTCGATATCGCAACTCGTCGTCAACTCGAAGCCCGCA
TGAACAAGAGAGACCGTGAACTCGAACGTCGCCGTCGCATGCCTGCGGCTTTCTTGCAGGATGACGAAGATGGTG
ACTTAGATCTCACTCGTCAACCCCGTCGCCGGAGACACCACTACGATGAAGATCGGGACGACGTCGAGATGGGTG
ATGATGCCATGGAAGAGCTCTCCCTGGAGGAGTTGACTGATGTCAAGGCTTCTAACCTTACGGACTGGGTCCTGC
AGCCCCAAGTCCTTCGCTCCATCTACCGAGAATTCAAGTCCTTCTTGACAGAGTACACCGACCCTGCCGGTGCTT
CGGTCTACGGAAACAAGATCAAGACCCTTGGTGAGGTGAACTCGGCATCCCTCGAAGTCTCTTACGCCCATCTAC
TGGAAACAAAAGCGGCTCTTGCATACTTCCTGGCCAACGAGCCCACTGAAGTGCTGAAAGTTTTCGACCAAGTCG
CTCTTGATGTCACTCTCTTCCACTACCCTCAATACCACGATATTCACAACGAAATTCATGTCCGCATTACCGATC
TCCCTGTCTCCTATACCCTTCGTCAACTCCGCCAGTCCCATCTCAACTGCCTTATCCGCGTCAGCGGTGTTGTTA
CTCGCCGTACCGGTGTCTTCCCGCAATTGAAATATGTCATGTTCGTTTGCGGAAAGTGTAACATCACTCTTGGTC
CCTTCCAGCAGGAAGCCAGTGCGGAAGTGAAGATCTCGTACTGCCAGAACTGCCAGTCGAAGGGACCTTTCTCTG
TGCACTCGGAAAAGACCGTTTACCGGAACTACCAGAAACTCACTCTCCAAGAATCTCCGGGCTCCGTCCCTGCCG
GTCGACTTCCCCGCCAGCGCGAGGTCGTTCTTCTCGCTGATCTCATTGATTCAGCCAAGCCAGGTGATGAAATCG
AGGTGACGGGAATCTACCGGAACAGCTACGATGCGCAGCTCAACAACAAGAACGGCTTCCCTGTGTTCGCCACGA
TTATTGAGGCCAACCATGTCGTCAAGTCCCACGACCAGCTGGCTGGTTTCCACTTGACCGAAGATGATGAGCGCG
AGATTCGGGCCCTGTCCAGGGACCCTGAGATTGTCGATAAGATTGTTCGCTCCGTTGCCCCTAGTATCTACGGCC
ACCTGGACGTCAAGACCGCCATCGCCCTATCTCTCTTCGGTGGTGTCAGCAAAGAAGCCCAAGGCAAGATGTCCA
TTCGTGGAGATATCAACGTCCTCCTTCTGGGTGACCCCGGTACCGCGAAGTCCCAGTTCCTCAAATACACCGAGA
AGACTGCCCACAGAGCCGTCTTCGCCACCGGTCAGGGTGCCAGTGCCGTCGGTCTGACAGCCAGCGTCCGTCGCG
ATCCCCTCACCAGCGAATGGACCCTCGAAGGAGGAGCCCTCGTTCTTGCAGACCGCGGTACCTGCTTGATCGATG
AGTTCGACAAGATGAACGACCAGGACCGTACTTCCATCCACGAAGCCATGGAACAACAGACCATCTCCATCTCCA
AGGCCGGTATCGTGACCACCCTGCAGGCTCGTTGTGCTGTTGTTGCCGCCGCCAACCCCATCGGCGGCCGTTACA
ACAGCAGCGCACCCTTCTCCGAGAACGTCCAACTCACCGAACCCATCCTGTCCCGTTTCGACATCCTCTGCGTCG
TCCGCGATCTGGTTGACCCAAGCGAGGATGAACGCCTCGCCAACTTCGTCATCGAATCCCACCACCGCGCCAACC
CGGCCCGTCCCCTTCGTGACCAAGACGGCAACCTGATCAACGCAGATGGACACCCCATCGACGAAGATGGCTACC
GTATTGACAAGAAGACCAAGCAACGCCTGCCCCTGACCGACGAAGAACTCGCTACCCGGGATGCCGAGAAGCAAC
GACGCGAAGACGAGAAAGACGGCGAAATCCCTCAAGAACTTCTTCGCAAATACATCCTCTACGCCCGTGAACGCT
GCCACCCCAAGCTCTACCAGATCGACCAAGACAAGATCGCCCGTCTATTCGCCGATATGAGACGCGAATCTCTGG
CCACCGGCGCTTACCCCATCACTGTATGCTTCCCTTCCCATTACTTTTAACCACATATCAGGAGACAAGTAAAGA
CTAATAATCCATCTAGGTTCGTCACCTCGAAGCCATCATGCGTATCGCCGAATCTTTCTGCAAGATGCGACTCTC
AGAATACTGCTCCGCACAGGACATCGACCGTGCCATCGCCGTCACCGTCGACTCCTTCATCGGTAGCCAGAAAAT
CAGCTGCAAGAAGGCTCTGTCCAGGGCATTTGCTAAGTACGTACCTACCATAACCACCCATGCCGTTAAAGGGTT
GAAGTGTACTAACAAAGCATCTAACAGATACACACTCTCCCGCCCCAAGCCCCAATCCAAGCGGAGAGCAGGCAT
TCCCGCCCCTGATCCGTTCAAGCCGCGCATGCAGTCTTCTACTAGGGCGCGGTAA

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