Protein
Protein (NP_071376)
Tenascin-N
Tenascin-N (TN-N) (Tenascin-W) (TN-W)
TNN
tenascin N
Undefined
Very low evidence
Ficolin-like
Undefined
a/b mixed with b-sheet / Fibrinogen C-ter like
MSLQEMFRFPMGLLLGSVLLVASAPATLEPPGCSNKEQQVTVSHTYKIDVPKSALVQVDADPQPLSDDGASLLALGEAREEQNIIFRHNIRLQTPQKDCELAGSVQDLLARVKKLEEEMVEMKEQCSAQRCCQGVTDLSRHCSGHGTFSLETCSCHCEEGREGPACERLACPGACSGHGRCVDGRCLCHEPYVGADCGYPACPENCSGHGECVRGVCQCHEDFMSEDCSEKRCPGDCSGHGFCDTGECYCEEGFTGLDCAQVVTPQGLQLLKNTEDSLLVSWEPSSQVDHYLLSYYPLGKELSGKQIQVPKEQHSYEILGLLPGTKYIVTLRNVKNEVSSSPQHLLATTDLAVLGTAWVTDETENSLDVEWENPSTEVDYYKLRYGPMTGQEVAEVTVPKSSDPKSRYDITGLHPGTEYKITVVPMRGELEGKPILLNGRTEIDSPTNVVTDRVTEDTATVSWDPVQAVIDKYVVRYTSADGDTKEMAVHKDESSTVLTGLKPGEAYKVYVWAERGNQGSKKADTNALTEIDSPANLVTDRVTENTATISWDPVQATIDKYVVRYTSADDQETREVLVGKEQSSTVLTGLRPGVEYTVHVWAQKGDRESKKADTNAPTDIDSPKNLVTDRVTENMATVSWDPVQAAIDKYVVRYTSAGGETREVPVGKEQSSTVLTGLRPGMEYMVHVWAQKGDQESKKADTKAQTDIDSPQNLVTDRVTENMATVSWDPVRATIDRYVVRYTSAKDGETREVPVGKEQSSTVLTGLRPGVEYTVHVWAQKGAQESKKADTKAQTDIDSPQNLVTDWVTENTATVSWDPVQATIDRYVVHYTSANGETREVPVGKEQSSTVLTGLRPGMEYTVHVWAQKGNQESKKADTKAQTEIDGPKNLVTDWVTENMATVSWDPVQATIDKYMVRYTSADGETREVPVGKEHSSTVLTGLRPGMEYMVHVWAQKGAQESKKADTKAQTELDPPRNLRPSAVTQSGGILTWTPPSAQIHGYILTYQFPDGTVKEMQLGREDQRFALQGLEQGATYPVSLVAFKGGRRSRNVSTTLSTVGARFPHPSDCSQVQQNSNAASGLYTIYLHGDASRPLQVYCDMETDGGGWIVFQRRNTGQLDFFKRWRSYVEGFGDPMKEFWLGLDKLHNLTTGTPARYEVRVDLQTANESAYAIYDFFQVASSKERYKLTVGKYRGTAGDALTYHNGWKFTTFDRDNDIALSNCALTHHGGWWYKNCHLANPNGRYGETKHSEGVNWEPWKGHEFSIPYVELKIRPHGYSREPVLGRKKRTLRGRLRTF
No structure currently available in the PDB RCSB Databank.
Structural models
SWISS-MODEL structural models
The location of the lectin domain structural model is: 1061-1278
We infer [1.32, 1.62] Å as the interval of error of this structural model.
Template 1: 2J3U chain: B, Q15485, NP_004099.2, sequence identity: 44.5%, coverage: 97.7%, location in sequence: 96-313, (71-288 in PDB).
Template 2: 6ZQX chain: A, Q8N539, NP_116232.3, sequence identity: 44.5%, coverage: 96.3%, location in sequence: 239-457, (239-457 in PDB).
Template 3: 2JHK chain: F, O00602, NP_001994.2, sequence identity: 43.6%, coverage: 97.2%, location in sequence: 110-326, (81-297 in PDB).
Show the alignment used for the construction of the structural model, Download.
Show the plot of DOPE energy score, Download.
We infer [1.32, 1.62] Å as the interval of error of this structural model.
Template 1: 2J3U chain: B, Q15485, NP_004099.2, sequence identity: 44.5%, coverage: 97.7%, location in sequence: 96-313, (71-288 in PDB).
Template 2: 6ZQX chain: A, Q8N539, NP_116232.3, sequence identity: 44.5%, coverage: 96.3%, location in sequence: 239-457, (239-457 in PDB).
Template 3: 2JHK chain: F, O00602, NP_001994.2, sequence identity: 43.6%, coverage: 97.2%, location in sequence: 110-326, (81-297 in PDB).
Show the alignment used for the construction of the structural model, Download.
Show the plot of DOPE energy score, Download.
Ligand
Glycan ligands from structural data
No crystal structures of complexes with glycan ligand.
References
NCBI References (10 PubMed Identifiers)
- Tenascin-W Is a Novel Stromal Marker in Biliary Tract Cancers. [33692777]
- Tenascin-W: Discovery, Evolution, and Future Prospects. [33603752]
- Multiple analyses indicate the specific association of NR1I3, C6 and TNN with low hip BMD risk. [28629900]
- Targeted next-generation sequencing assay for detection of mutations in primary myopathies. [26627873]
- Transcriptional regulation of tenascin-W by TGF-beta signaling in the bone metastatic niche of breast cancer cells. [25868708]
- Tenascin-W, a new marker of cancer stroma, is elevated in sera of colon and breast cancer patients. [18306355]
- Tenascin-W is a novel marker for activated tumor stroma in low-grade human breast cancer and influences cell behavior. [17909022]
- Human plasma N-glycoproteome analysis by immunoaffinity subtraction, hydrazide chemistry, and mass spectrometry. [16335952]
- Tenascin-W is found in malignant mammary tumors, promotes alpha8 integrin-dependent motility and requires p38MAPK activity for BMP-2 and TNF-alpha induced expression in vitro. [15592496]
- Tenascin-N: characterization of a novel member of the tenascin family that mediates neurite repulsion from hippocampal explants. [12812753]
UniProt Main References (3 PubMed Identifiers)
- The DNA sequence and biological annotation of human chromosome 1. [16710414]
- The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC). [15489334]
- Tenascin-W is a specific marker of glioma-associated blood vessels and stimulates angiogenesis in vitro. [19884327]
All isoforms of this gene containing a lectin domain
RNA
RNA (Transcript ID: NM_022093.2)
m7G-5')ppp(5'-GAGACGAGAACCAGGGACGACCAGCAAGUACCAAGGUCUGCGGCAGGAGGAGACCGGCUCACAGGAGCAGCAGCAUUGGAAGAGGCACCCAGCAGCCUCCCAGGCAUCCUGGAGGGUCUGCUCCCUGUCUUUCCAAGGAUGAGUCUCCAGGAGAUGUUCCGCUUCCCUAUGGGGCUCCUGCUUGGCUCUGUGCUCCUGGUGGCUUCGGCCCCAGCCACUCUGGAGCCUCCCGGCUGCAGCAACAAGGAGCAACAGGUCACUGUCAGCCACACCUACAAGAUCGAUGUGCCCAAGUCUGCCUUGGUUCAGGUUGACGCUGACCCUCAGCCCCUCAGUGACGAUGGGGCUUCGCUCUUGGCCCUGGGGGAGGCCAGGGAGGAACAGAACAUCAUCUUCAGGCACAACAUCCGCCUUCAGACGCCACAGAAGGACUGCGAGUUGGCAGGCAGUGUCCAGGACCUCCUGGCCCGGGUGAAGAAGCUGGAGGAAGAGAUGGUGGAGAUGAAGGAACAGUGUAGUGCCCAGCGCUGCUGCCAGGGAGUCACUGAUCUAAGCCGCCACUGCAGCGGCCACGGGACCUUCUCCCUGGAGACCUGCAGCUGCCACUGCGAAGAGGGCAGGGAGGGCCCCGCCUGCGAGCGGCUGGCCUGCCCCGGGGCGUGCAGCGGCCACGGGCGUUGCGUGGACGGGCGCUGCCUGUGCCAUGAGCCCUACGUGGGUGCCGACUGCGGCUACCCGGCCUGCCCUGAGAACUGCAGCGGACACGGCGAGUGCGUGCGCGGCGUGUGCCAGUGCCACGAAGACUUCAUGUCGGAGGACUGCAGCGAGAAGCGCUGUCCCGGCGACUGCAGCGGCCACGGCUUCUGUGACACGGGCGAGUGCUACUGCGAGGAGGGCUUCACAGGCCUGGACUGUGCCCAGGUGGUCACCCCACAGGGCCUGCAGCUGCUCAAGAACACGGAGGAUUCUCUGCUGGUGAGCUGGGAGCCCUCCAGCCAGGUGGAUCACUACCUCCUCAGCUACUACCCCCUGGGGAAGGAGCUCUCUGGGAAGCAGAUCCAAGUGCCCAAGGAGCAGCACAGCUAUGAGAUUCUUGGUUUGCUGCCUGGAACCAAGUACAUAGUCACCCUGCGUAACGUCAAGAAUGAAGUUUCUAGCAGCCCACAGCAUCUACUUGCCACCACAGACCUUGCUGUGCUUGGCACUGCCUGGGUGACAGAUGAGACUGAGAACUCCCUUGACGUGGAGUGGGAAAACCCCUCAACUGAGGUGGACUACUACAAGCUGCGAUAUGGCCCCAUGACAGGACAGGAGGUAGCUGAGGUCACUGUGCCCAAGAGCAGUGACCCCAAGAGCCGAUAUGACAUCACUGGUCUGCACCCGGGGACUGAGUAUAAGAUCACGGUGGUGCCCAUGAGAGGAGAGCUGGAGGGCAAGCCGAUCCUCCUGAAUGGCAGGACAGAAAUUGACAGUCCAACCAAUGUUGUCACUGAUCGAGUGACUGAAGACACAGCAACUGUCUCCUGGGACCCAGUGCAGGCUGUCAUAGACAAGUAUGUAGUGCGCUACACUUCUGCUGAUGGGGACACCAAGGAAAUGGCAGUGCACAAGGAUGAGAGCAGCACUGUCCUGACGGGCCUGAAGCCAGGAGAGGCAUACAAGGUCUACGUGUGGGCUGAAAGGGGCAACCAGGGGAGCAAGAAAGCUGACACCAAUGCCCUCACAGAAAUUGACAGCCCAGCAAACCUGGUGACUGACCGGGUGACUGAGAAUACCGCCACCAUCUCCUGGGACCCGGUACAGGCCACCAUUGACAAGUACGUGGUGCGCUACACCUCUGCUGACGACCAAGAGACCAGAGAGGUUCUGGUGGGGAAGGAGCAGAGCAGCACUGUCCUGACAGGCCUGAGGCCAGGUGUGGAGUACACAGUGCAUGUCUGGGCCCAGAAGGGGGACCGAGAGAGCAAGAAGGCUGACACCAACGCCCCGACAGAUAUUGACAGCCCCAAAAACCUGGUGACUGACCGGGUGACAGAGAAUAUGGCCACGGUCUCCUGGGACCCGGUGCAGGCCGCCAUUGACAAGUACGUGGUGCGCUACACCUCUGCUGGUGGAGAGACCAGGGAGGUUCCGGUGGGGAAGGAGCAGAGCAGCACAGUCCUGACAGGCCUGAGACCGGGUAUGGAGUACAUGGUGCACGUGUGGGCCCAGAAGGGGGACCAGGAGAGCAAGAAGGCCGACACCAAGGCCCAGACAGACAUUGACAGCCCCCAAAACCUGGUGACCGACCGGGUGACAGAGAAUAUGGCCACUGUCUCCUGGGACCCGGUGCGGGCCACCAUUGACAGGUAUGUGGUGCGCUACACCUCUGCCAAGGACGGAGAGACCAGGGAGGUUCCGGUGGGGAAGGAGCAGAGUAGCACUGUCCUGACGGGCCUGAGGCCGGGUGUGGAGUACACGGUGCACGUGUGGGCCCAGAAGGGGGCCCAGGAGAGCAAGAAGGCUGACACCAAGGCCCAGACAGACAUUGACAGCCCCCAAAACCUGGUCACUGACUGGGUGACAGAGAAUACAGCCACUGUCUCCUGGGACCCGGUGCAGGCCACCAUUGACAGGUAUGUGGUGCACUACACGUCUGCCAACGGAGAGACCAGGGAGGUUCCAGUGGGGAAGGAGCAGAGCAGCACUGUCCUGACGGGCCUGAGGCCGGGCAUGGAGUACACGGUGCACGUGUGGGCCCAGAAGGGGAACCAGGAGAGCAAGAAGGCUGACACCAAGGCCCAGACAGAAAUUGACGGCCCCAAAAACCUAGUGACUGACUGGGUGACGGAGAAUAUGGCCACUGUCUCCUGGGACCCGGUUCAGGCCACCAUUGACAAGUACAUGGUGCGCUACACCUCUGCUGACGGAGAGACCAGGGAGGUUCCGGUGGGGAAGGAGCACAGCAGCACUGUCCUGACGGGCCUGAGACCAGGCAUGGAGUACAUGGUGCACGUGUGGGCCCAGAAGGGGGCCCAGGAGAGCAAGAAGGCUGACACCAAGGCCCAGACAGAACUCGACCCUCCCAGAAACCUUCGUCCAUCUGCUGUAACGCAGUCUGGUGGCAUAUUGACCUGGACGCCCCCCUCUGCUCAGAUCCACGGCUACAUUCUGACUUACCAGUUCCCAGAUGGCACAGUUAAGGAGAUGCAGCUGGGACGGGAAGACCAGAGGUUUGCGUUGCAAGGCCUUGAGCAAGGCGCCACCUACCCUGUCUCCCUUGUUGCCUUUAAGGGUGGUCGCCGGAGCAGAAAUGUAUCCACCACCCUCUCCACAGUUGGUGCCCGUUUCCCACACCCUUCGGACUGCAGUCAGGUUCAGCAGAACAGCAAUGCCGCCAGUGGUCUGUACACCAUCUACCUGCAUGGCGAUGCCAGCCGGCCCCUGCAGGUGUACUGUGACAUGGAAACGGACGGAGGUGGCUGGAUUGUCUUCCAGAGGCGGAACACUGGGCAGCUGGAUUUCUUCAAGCGAUGGAGGAGCUAUGUGGAAGGCUUUGGGGACCCCAUGAAGGAGUUCUGGCUUGGACUUGACAAGCUACACAACCUCACCACCGGCACUCCAGCGCGGUAUGAGGUGAGAGUGGAUUUACAGACUGCCAAUGAAUCUGCCUAUGCUAUAUAUGAUUUCUUCCAAGUGGCCUCCAGCAAGGAGCGGUAUAAGCUGACAGUUGGGAAAUACAGAGGCACGGCAGGGGAUGCUCUUACUUACCACAAUGGAUGGAAGUUUACAACUUUUGACAGAGACAAUGAUAUCGCACUCAGCAACUGUGCCCUGACACAUCAUGGUGGCUGGUGGUAUAAGAACUGCCACUUGGCCAACCCUAAUGGCAGAUAUGGGGAGACCAAGCACAGUGAGGGGGUGAACUGGGAGCCUUGGAAAGGACAUGAAUUCUCCAUUCCUUACGUGGAGUUGAAAAUCCGCCCUCAUGGCUACAGCAGGGAGCCUGUCCUGGGCAGAAAGAAGCGGACGCUGAGAGGAAGGCUGCGAACGUUCUGAUGGCCCGUGUGAGCAGUCCUCGCAGGAGACACCACCAGCUGUGGCAGCUUGGGGCGGGGUGGGUAGUGGUCACUGCGGUCUGGGAGUGCUCAGAUAGCCCGCAGAACAAAUCAUGUCACCAAGCUUCAAGCCAUGGAGGUUCCUUCCCUCUCACCUGCAUUUUUGCCCGUCUUUAUGAGGGUCUUGAAAAUCAAAAUAGUAGUUGCACAGUAUGUGUAGGAAAGACAGUACUGGAACGGCAAGGUUUCUCAGCUUAUCUUCAGCAACAUAUAUACUGGAUUAGGGCAAGAGAAGGAAUCACCCAGCACUUCACCAGUUGGAAAUCUCUGGAAAUUUACAUCUAUGUAUUUAAAGUUCUGCUAAUGCAAAUCUUUUCUCUGGAAAGAAGCACAGAGGAGGAGUUCUGAUGACCCAGGGGUUAGGGCUGAGACAACCGGACGUUUGUCACCUCCUUUCCCAUUGGGUUUUUAGGAAAACAGUGUGAACCUCCCCCUUUUAAUUUCUGGUGUUAUGAGGAAGAAUAAAGGGGAUAAAAGGGGCUAAGAUGGACUCAUGUUUAGCUAAGUUCUGACUUGUAUCCAGCAUGCUGGAGACCAAAGCUGCCGCCUUACUGCUAUUUUUAAGUGCCCUCUUUUCAGUCAUUUGCAUAAUUGCGUCCAUAGAGCUGCAUAUGUUGUGAAUAAAUUCUCACUCAUUUCAACUUUGAAUAAUUUGACUGUCUUGAUAAUUGGUUCCUCCCAAAGACUCUUCUGCAACUCCCAUUCAUGCCCACCAGGCCUCAGACUCCCUCUUUUCCCCGCCCUGCACUAUUGGAGCCCUGGGUUUUGUGGGAGUGCUCAGCACCGUGAGUCUUACUGUUUGAUCGGACAGUUAGCAAGAUCAGAUCCUUUUUGCUUAUUUUCUAUCACUUUGGAGGGUUUUCUGUAGCAAAAUCAGUGACCAAUGAAGUAACUUAAAUUCCUAUUGAAGAAAAAAAAUAAUAAACCACUUGAUUUAAAAAAAAA-3'- Poly-A tail
- Coding region
DNA
DNA (Gene ID: 63923)
tenascin N
strand +
NCBI CDS gene sequence (3900 bp)
5'-ATGAGTCTCCAGGAGATGTTCCGCTTCCCTATGGGGCTCCTGCTTGGCTCTGTGCTCCTGGTGGCTTCGGCCCCAGCCACTCTGGAGCCTCCCGGCTGCAGCAACAAGGAGCAACAGGTCACTGTCAGCCACACCTACAAGATCGATGTGCCCAAGTCTGCCTTGGTTCAGGTTGACGCTGACCCTCAGCCCCTCAGTGACGATGGGGCTTCGCTCTTGGCCCTGGGGGAGGCCAGGGAGGAACAGAACATCATCTTCAGGCACAACATCCGCCTTCAGACGCCACAGAAGGACTGCGAGTTGGCAGGCAGTGTCCAGGACCTCCTGGCCCGGGTGAAGAAGCTGGAGGAAGAGATGGTGGAGATGAAGGAACAGTGTAGTGCCCAGCGCTGCTGCCAGGGAGTCACTGATCTAAGCCGCCACTGCAGCGGCCACGGGACCTTCTCCCTGGAGACCTGCAGCTGCCACTGCGAAGAGGGCAGGGAGGGCCCCGCCTGCGAGCGGCTGGCCTGCCCCGGGGCGTGCAGCGGCCACGGGCGTTGCGTGGACGGGCGCTGCCTGTGCCATGAGCCCTACGTGGGTGCCGACTGCGGCTACCCGGCCTGCCCTGAGAACTGCAGCGGACACGGCGAGTGCGTGCGCGGCGTGTGCCAGTGCCACGAAGACTTCATGTCGGAGGACTGCAGCGAGAAGCGCTGTCCCGGCGACTGCAGCGGCCACGGCTTCTGTGACACGGGCGAGTGCTACTGCGAGGAGGGCTTCACAGGCCTGGACTGTGCCCAGGTGGTCACCCCACAGGGCCTGCAGCTGCTCAAGAACACGGAGGATTCTCTGCTGGTGAGCTGGGAGCCCTCCAGCCAGGTGGATCACTACCTCCTCAGCTACTACCCCCTGGGGAAGGAGCTCTCTGGGAAGCAGATCCAAGTGCCCAAGGAGCAGCACAGCTATGAGATTCTTGGTTTGCTGCCTGGAACCAAGTACATAGTCACCCTGCGTAACGTCAAGAATGAAGTTTCTAGCAGCCCACAGCATCTACTTGCCACCACAGACCTTGCTGTGCTTGGCACTGCCTGGGTGACAGATGAGACTGAGAACTCCCTTGACGTGGAGTGGGAAAACCCCTCAACTGAGGTGGACTACTACAAGCTGCGATATGGCCCCATGACAGGACAGGAGGTAGCTGAGGTCACTGTGCCCAAGAGCAGTGACCCCAAGAGCCGATATGACATCACTGGTCTGCACCCGGGGACTGAGTATAAGATCACGGTGGTGCCCATGAGAGGAGAGCTGGAGGGCAAGCCGATCCTCCTGAATGGCAGGACAGAAATTGACAGTCCAACCAATGTTGTCACTGATCGAGTGACTGAAGACACAGCAACTGTCTCCTGGGACCCAGTGCAGGCTGTCATAGACAAGTATGTAGTGCGCTACACTTCTGCTGATGGGGACACCAAGGAAATGGCAGTGCACAAGGATGAGAGCAGCACTGTCCTGACGGGCCTGAAGCCAGGAGAGGCATACAAGGTCTACGTGTGGGCTGAAAGGGGCAACCAGGGGAGCAAGAAAGCTGACACCAATGCCCTCACAGAAATTGACAGCCCAGCAAACCTGGTGACTGACCGGGTGACTGAGAATACCGCCACCATCTCCTGGGACCCGGTACAGGCCACCATTGACAAGTACGTGGTGCGCTACACCTCTGCTGACGACCAAGAGACCAGAGAGGTTCTGGTGGGGAAGGAGCAGAGCAGCACTGTCCTGACAGGCCTGAGGCCAGGTGTGGAGTACACAGTGCATGTCTGGGCCCAGAAGGGGGACCGAGAGAGCAAGAAGGCTGACACCAACGCCCCGACAGATATTGACAGCCCCAAAAACCTGGTGACTGACCGGGTGACAGAGAATATGGCCACGGTCTCCTGGGACCCGGTGCAGGCCGCCATTGACAAGTACGTGGTGCGCTACACCTCTGCTGGTGGAGAGACCAGGGAGGTTCCGGTGGGGAAGGAGCAGAGCAGCACAGTCCTGACAGGCCTGAGACCGGGTATGGAGTACATGGTGCACGTGTGGGCCCAGAAGGGGGACCAGGAGAGCAAGAAGGCCGACACCAAGGCCCAGACAGACATTGACAGCCCCCAAAACCTGGTGACCGACCGGGTGACAGAGAATATGGCCACTGTCTCCTGGGACCCGGTGCGGGCCACCATTGACAGGTATGTGGTGCGCTACACCTCTGCCAAGGACGGAGAGACCAGGGAGGTTCCGGTGGGGAAGGAGCAGAGTAGCACTGTCCTGACGGGCCTGAGGCCGGGTGTGGAGTACACGGTGCACGTGTGGGCCCAGAAGGGGGCCCAGGAGAGCAAGAAGGCTGACACCAAGGCCCAGACAGACATTGACAGCCCCCAAAACCTGGTCACTGACTGGGTGACAGAGAATACAGCCACTGTCTCCTGGGACCCGGTGCAGGCCACCATTGACAGGTATGTGGTGCACTACACGTCTGCCAACGGAGAGACCAGGGAGGTTCCAGTGGGGAAGGAGCAGAGCAGCACTGTCCTGACGGGCCTGAGGCCGGGCATGGAGTACACGGTGCACGTGTGGGCCCAGAAGGGGAACCAGGAGAGCAAGAAGGCTGACACCAAGGCCCAGACAGAAATTGACGGCCCCAAAAACCTAGTGACTGACTGGGTGACGGAGAATATGGCCACTGTCTCCTGGGACCCGGTTCAGGCCACCATTGACAAGTACATGGTGCGCTACACCTCTGCTGACGGAGAGACCAGGGAGGTTCCGGTGGGGAAGGAGCACAGCAGCACTGTCCTGACGGGCCTGAGACCAGGCATGGAGTACATGGTGCACGTGTGGGCCCAGAAGGGGGCCCAGGAGAGCAAGAAGGCTGACACCAAGGCCCAGACAGAACTCGACCCTCCCAGAAACCTTCGTCCATCTGCTGTAACGCAGTCTGGTGGCATATTGACCTGGACGCCCCCCTCTGCTCAGATCCACGGCTACATTCTGACTTACCAGTTCCCAGATGGCACAGTTAAGGAGATGCAGCTGGGACGGGAAGACCAGAGGTTTGCGTTGCAAGGCCTTGAGCAAGGCGCCACCTACCCTGTCTCCCTTGTTGCCTTTAAGGGTGGTCGCCGGAGCAGAAATGTATCCACCACCCTCTCCACAGTTGGTGCCCGTTTCCCACACCCTTCGGACTGCAGTCAGGTTCAGCAGAACAGCAATGCCGCCAGTGGTCTGTACACCATCTACCTGCATGGCGATGCCAGCCGGCCCCTGCAGGTGTACTGTGACATGGAAACGGACGGAGGTGGCTGGATTGTCTTCCAGAGGCGGAACACTGGGCAGCTGGATTTCTTCAAGCGATGGAGGAGCTATGTGGAAGGCTTTGGGGACCCCATGAAGGAGTTCTGGCTTGGACTTGACAAGCTACACAACCTCACCACCGGCACTCCAGCGCGGTATGAGGTGAGAGTGGATTTACAGACTGCCAATGAATCTGCCTATGCTATATATGATTTCTTCCAAGTGGCCTCCAGCAAGGAGCGGTATAAGCTGACAGTTGGGAAATACAGAGGCACGGCAGGGGATGCTCTTACTTACCACAATGGATGGAAGTTTACAACTTTTGACAGAGACAATGATATCGCACTCAGCAACTGTGCCCTGACACATCATGGTGGCTGGTGGTATAAGAACTGCCACTTGGCCAACCCTAATGGCAGATATGGGGAGACCAAGCACAGTGAGGGGGTGAACTGGGAGCCTTGGAAAGGACATGAATTCTCCATTCCTTACGTGGAGTTGAAAATCCGCCCTCATGGCTACAGCAGGGAGCCTGTCCTGGGCAGAAAGAAGCGGACGCTGAGAGGAAGGCTGCGAACGTTCTGA-3'
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