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
Uncharacterised
0.572
Undefined
Protein sequence and protein families (fasta) (1299 amino acids) Download
MSLQEMFRFPMGLLLGSVLLVASAPATLEPPGCSNKEQQVTVSHTYKIDVPKSALVQVDADPQPLSDDGASLLALGEAREEQNIIFRHNIRLQTPQKDCELAGSVQDLLARVKKLEEEMVEMKEQCSAQRCCQGVTDLSRHCSGHGTFSLETCSCHCEEGREGPACERLACPGACSGHGRCVDGRCLCHEPYVGADCGYPACPENCSGHGECVRGVCQCHEDFMSEDCSEKRCPGDCSGHGFCDTGECYCEEGFTGLDCAQVVTPQGLQLLKNTEDSLLVSWEPSSQVDHYLLSYYPLGKELSGKQIQVPKEQHSYEILGLLPGTKYIVTLRNVKNEVSSSPQHLLATTDLAVLGTAWVTDETENSLDVEWENPSTEVDYYKLRYGPMTGQEVAEVTVPKSSDPKSRYDITGLHPGTEYKITVVPMRGELEGKPILLNGRTEIDSPTNVVTDRVTEDTATVSWDPVQAVIDKYVVRYTSADGDTKEMAVHKDESSTVLTGLKPGEAYKVYVWAERGNQGSKKADTNALTEIDSPANLVTDRVTENTATISWDPVQATIDKYVVRYTSADDQETREVLVGKEQSSTVLTGLRPGVEYTVHVWAQKGDRESKKADTNAPTDIDSPKNLVTDRVTENMATVSWDPVQAAIDKYVVRYTSAGGETREVPVGKEQSSTVLTGLRPGMEYMVHVWAQKGDQESKKADTKAQTDIDSPQNLVTDRVTENMATVSWDPVRATIDRYVVRYTSAKDGETREVPVGKEQSSTVLTGLRPGVEYTVHVWAQKGAQESKKADTKAQTDIDSPQNLVTDWVTENTATVSWDPVQATIDRYVVHYTSANGETREVPVGKEQSSTVLTGLRPGMEYTVHVWAQKGNQESKKADTKAQTEIDGPKNLVTDWVTENMATVSWDPVQATIDKYMVRYTSADGETREVPVGKEHSSTVLTGLRPGMEYMVHVWAQKGAQESKKADTKAQTELDPPRNLRPSAVTQSGGILTWTPPSAQIHGYILTYQFPDGTVKEMQLGREDQRFALQGLEQGATYPVSLVAFKGGRRSRNVSTTLSTVGARFPHPSDCSQVQQNSNAASGLYTIYLHGDASRPLQVYCDMETDGGGWIVFQRRNTGQLDFFKRWRSYVEGFGDPMKEFWLGLDKLHNLTTGTPARYEVRVDLQTANESAYAIYDFFQVASSKERYKLTVGKYRGTAGDALTYHNGWKFTTFDRDNDIALSNCALTHHGGWWYKNCHLANPNGRYGETKHSEGVNWEPWKGHEFSIPYVELKIRPHGYSREPVLGRKKRTLRGRLRTF
No structure currently available in the PDB RCSB Databank.
Structural models
Model Confidence:
  •    Very high (pLDDT > 90)
  •    Confident (90 > pLDDT > 70)
  •    Low (70 > pLDDT > 50)
  •    Very low (pLDDT < 50)

  AlphaFold produces a per-residue confidence score (pLDDT) between 0 and 100. Some regions with low pLDDT may be unstructured in isolation.

SWISS-MODEL structural models
Modeller structural model (Homology modelling pipeline), Error: [1.32, 1.62] ÅDownload
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.
Oligomerization and Known Interactions
Homohexamer. Source: UniProt
Annotation
Ligand
Glycan ligands from structural data
No crystal structures of complexes with glycan ligand.
Expression
Functionality temporarily unavailable.
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
XP_016857538.1, NP_071376.1, XP_016857537.1
RNA
RNA (Transcript ID: NM_022093.2)
tenascin N
m7G-5')ppp(5'-GAGACGAGAACCAGGGACGACCAGCAAGUACCAAGGUCUGCGGCAGGAGGAGACCGGCUCACAGGAGCAGCAGCAUUGGAAGAGGCACCCAGCAGCCUCCCAGGCAUCCUGGAGGGUCUGCUCCCUGUCUUUCCAAGGAUGAGUCUCCAGGAGAUGUUCCGCUUCCCUAUGGGGCUCCUGCUUGGCUCUGUGCUCCUGGUGGCUUCGGCCCCAGCCACUCUGGAGCCUCCCGGCUGCAGCAACAAGGAGCAACAGGUCACUGUCAGCCACACCUACAAGAUCGAUGUGCCCAAGUCUGCCUUGGUUCAGGUUGACGCUGACCCUCAGCCCCUCAGUGACGAUGGGGCUUCGCUCUUGGCCCUGGGGGAGGCCAGGGAGGAACAGAACAUCAUCUUCAGGCACAACAUCCGCCUUCAGACGCCACAGAAGGACUGCGAGUUGGCAGGCAGUGUCCAGGACCUCCUGGCCCGGGUGAAGAAGCUGGAGGAAGAGAUGGUGGAGAUGAAGGAACAGUGUAGUGCCCAGCGCUGCUGCCAGGGAGUCACUGAUCUAAGCCGCCACUGCAGCGGCCACGGGACCUUCUCCCUGGAGACCUGCAGCUGCCACUGCGAAGAGGGCAGGGAGGGCCCCGCCUGCGAGCGGCUGGCCUGCCCCGGGGCGUGCAGCGGCCACGGGCGUUGCGUGGACGGGCGCUGCCUGUGCCAUGAGCCCUACGUGGGUGCCGACUGCGGCUACCCGGCCUGCCCUGAGAACUGCAGCGGACACGGCGAGUGCGUGCGCGGCGUGUGCCAGUGCCACGAAGACUUCAUGUCGGAGGACUGCAGCGAGAAGCGCUGUCCCGGCGACUGCAGCGGCCACGGCUUCUGUGACACGGGCGAGUGCUACUGCGAGGAGGGCUUCACAGGCCUGGACUGUGCCCAGGUGGUCACCCCACAGGGCCUGCAGCUGCUCAAGAACACGGAGGAUUCUCUGCUGGUGAGCUGGGAGCCCUCCAGCCAGGUGGAUCACUACCUCCUCAGCUACUACCCCCUGGGGAAGGAGCUCUCUGGGAAGCAGAUCCAAGUGCCCAAGGAGCAGCACAGCUAUGAGAUUCUUGGUUUGCUGCCUGGAACCAAGUACAUAGUCACCCUGCGUAACGUCAAGAAUGAAGUUUCUAGCAGCCCACAGCAUCUACUUGCCACCACAGACCUUGCUGUGCUUGGCACUGCCUGGGUGACAGAUGAGACUGAGAACUCCCUUGACGUGGAGUGGGAAAACCCCUCAACUGAGGUGGACUACUACAAGCUGCGAUAUGGCCCCAUGACAGGACAGGAGGUAGCUGAGGUCACUGUGCCCAAGAGCAGUGACCCCAAGAGCCGAUAUGACAUCACUGGUCUGCACCCGGGGACUGAGUAUAAGAUCACGGUGGUGCCCAUGAGAGGAGAGCUGGAGGGCAAGCCGAUCCUCCUGAAUGGCAGGACAGAAAUUGACAGUCCAACCAAUGUUGUCACUGAUCGAGUGACUGAAGACACAGCAACUGUCUCCUGGGACCCAGUGCAGGCUGUCAUAGACAAGUAUGUAGUGCGCUACACUUCUGCUGAUGGGGACACCAAGGAAAUGGCAGUGCACAAGGAUGAGAGCAGCACUGUCCUGACGGGCCUGAAGCCAGGAGAGGCAUACAAGGUCUACGUGUGGGCUGAAAGGGGCAACCAGGGGAGCAAGAAAGCUGACACCAAUGCCCUCACAGAAAUUGACAGCCCAGCAAACCUGGUGACUGACCGGGUGACUGAGAAUACCGCCACCAUCUCCUGGGACCCGGUACAGGCCACCAUUGACAAGUACGUGGUGCGCUACACCUCUGCUGACGACCAAGAGACCAGAGAGGUUCUGGUGGGGAAGGAGCAGAGCAGCACUGUCCUGACAGGCCUGAGGCCAGGUGUGGAGUACACAGUGCAUGUCUGGGCCCAGAAGGGGGACCGAGAGAGCAAGAAGGCUGACACCAACGCCCCGACAGAUAUUGACAGCCCCAAAAACCUGGUGACUGACCGGGUGACAGAGAAUAUGGCCACGGUCUCCUGGGACCCGGUGCAGGCCGCCAUUGACAAGUACGUGGUGCGCUACACCUCUGCUGGUGGAGAGACCAGGGAGGUUCCGGUGGGGAAGGAGCAGAGCAGCACAGUCCUGACAGGCCUGAGACCGGGUAUGGAGUACAUGGUGCACGUGUGGGCCCAGAAGGGGGACCAGGAGAGCAAGAAGGCCGACACCAAGGCCCAGACAGACAUUGACAGCCCCCAAAACCUGGUGACCGACCGGGUGACAGAGAAUAUGGCCACUGUCUCCUGGGACCCGGUGCGGGCCACCAUUGACAGGUAUGUGGUGCGCUACACCUCUGCCAAGGACGGAGAGACCAGGGAGGUUCCGGUGGGGAAGGAGCAGAGUAGCACUGUCCUGACGGGCCUGAGGCCGGGUGUGGAGUACACGGUGCACGUGUGGGCCCAGAAGGGGGCCCAGGAGAGCAAGAAGGCUGACACCAAGGCCCAGACAGACAUUGACAGCCCCCAAAACCUGGUCACUGACUGGGUGACAGAGAAUACAGCCACUGUCUCCUGGGACCCGGUGCAGGCCACCAUUGACAGGUAUGUGGUGCACUACACGUCUGCCAACGGAGAGACCAGGGAGGUUCCAGUGGGGAAGGAGCAGAGCAGCACUGUCCUGACGGGCCUGAGGCCGGGCAUGGAGUACACGGUGCACGUGUGGGCCCAGAAGGGGAACCAGGAGAGCAAGAAGGCUGACACCAAGGCCCAGACAGAAAUUGACGGCCCCAAAAACCUAGUGACUGACUGGGUGACGGAGAAUAUGGCCACUGUCUCCUGGGACCCGGUUCAGGCCACCAUUGACAAGUACAUGGUGCGCUACACCUCUGCUGACGGAGAGACCAGGGAGGUUCCGGUGGGGAAGGAGCACAGCAGCACUGUCCUGACGGGCCUGAGACCAGGCAUGGAGUACAUGGUGCACGUGUGGGCCCAGAAGGGGGCCCAGGAGAGCAAGAAGGCUGACACCAAGGCCCAGACAGAACUCGACCCUCCCAGAAACCUUCGUCCAUCUGCUGUAACGCAGUCUGGUGGCAUAUUGACCUGGACGCCCCCCUCUGCUCAGAUCCACGGCUACAUUCUGACUUACCAGUUCCCAGAUGGCACAGUUAAGGAGAUGCAGCUGGGACGGGAAGACCAGAGGUUUGCGUUGCAAGGCCUUGAGCAAGGCGCCACCUACCCUGUCUCCCUUGUUGCCUUUAAGGGUGGUCGCCGGAGCAGAAAUGUAUCCACCACCCUCUCCACAGUUGGUGCCCGUUUCCCACACCCUUCGGACUGCAGUCAGGUUCAGCAGAACAGCAAUGCCGCCAGUGGUCUGUACACCAUCUACCUGCAUGGCGAUGCCAGCCGGCCCCUGCAGGUGUACUGUGACAUGGAAACGGACGGAGGUGGCUGGAUUGUCUUCCAGAGGCGGAACACUGGGCAGCUGGAUUUCUUCAAGCGAUGGAGGAGCUAUGUGGAAGGCUUUGGGGACCCCAUGAAGGAGUUCUGGCUUGGACUUGACAAGCUACACAACCUCACCACCGGCACUCCAGCGCGGUAUGAGGUGAGAGUGGAUUUACAGACUGCCAAUGAAUCUGCCUAUGCUAUAUAUGAUUUCUUCCAAGUGGCCUCCAGCAAGGAGCGGUAUAAGCUGACAGUUGGGAAAUACAGAGGCACGGCAGGGGAUGCUCUUACUUACCACAAUGGAUGGAAGUUUACAACUUUUGACAGAGACAAUGAUAUCGCACUCAGCAACUGUGCCCUGACACAUCAUGGUGGCUGGUGGUAUAAGAACUGCCACUUGGCCAACCCUAAUGGCAGAUAUGGGGAGACCAAGCACAGUGAGGGGGUGAACUGGGAGCCUUGGAAAGGACAUGAAUUCUCCAUUCCUUACGUGGAGUUGAAAAUCCGCCCUCAUGGCUACAGCAGGGAGCCUGUCCUGGGCAGAAAGAAGCGGACGCUGAGAGGAAGGCUGCGAACGUUCUGAUGGCCCGUGUGAGCAGUCCUCGCAGGAGACACCACCAGCUGUGGCAGCUUGGGGCGGGGUGGGUAGUGGUCACUGCGGUCUGGGAGUGCUCAGAUAGCCCGCAGAACAAAUCAUGUCACCAAGCUUCAAGCCAUGGAGGUUCCUUCCCUCUCACCUGCAUUUUUGCCCGUCUUUAUGAGGGUCUUGAAAAUCAAAAUAGUAGUUGCACAGUAUGUGUAGGAAAGACAGUACUGGAACGGCAAGGUUUCUCAGCUUAUCUUCAGCAACAUAUAUACUGGAUUAGGGCAAGAGAAGGAAUCACCCAGCACUUCACCAGUUGGAAAUCUCUGGAAAUUUACAUCUAUGUAUUUAAAGUUCUGCUAAUGCAAAUCUUUUCUCUGGAAAGAAGCACAGAGGAGGAGUUCUGAUGACCCAGGGGUUAGGGCUGAGACAACCGGACGUUUGUCACCUCCUUUCCCAUUGGGUUUUUAGGAAAACAGUGUGAACCUCCCCCUUUUAAUUUCUGGUGUUAUGAGGAAGAAUAAAGGGGAUAAAAGGGGCUAAGAUGGACUCAUGUUUAGCUAAGUUCUGACUUGUAUCCAGCAUGCUGGAGACCAAAGCUGCCGCCUUACUGCUAUUUUUAAGUGCCCUCUUUUCAGUCAUUUGCAUAAUUGCGUCCAUAGAGCUGCAUAUGUUGUGAAUAAAUUCUCACUCAUUUCAACUUUGAAUAAUUUGACUGUCUUGAUAAUUGGUUCCUCCCAAAGACUCUUCUGCAACUCCCAUUCAUGCCCACCAGGCCUCAGACUCCCUCUUUUCCCCGCCCUGCACUAUUGGAGCCCUGGGUUUUGUGGGAGUGCUCAGCACCGUGAGUCUUACUGUUUGAUCGGACAGUUAGCAAGAUCAGAUCCUUUUUGCUUAUUUUCUAUCACUUUGGAGGGUUUUCUGUAGCAAAAUCAGUGACCAAUGAAGUAACUUAAAUUCCUAUUGAAGAAAAAAAAUAAUAAACCACUUGAUUUAAAAAAAAA-3'- Poly-A tail
  • Coding region
DNA
DNA (Gene ID: 63923)
TNN
tenascin N
strand +
TNW
NCBI CDS gene sequence (3900 bp)
5'-ATGAGTCTCCAGGAGATGTTCCGCTTCCCTATGGGGCTCCTGCTTGGCTCTGTGCTCCTGGTGGCTTCGGCCCCAGCCACTCTGGAGCCTCCCGGCTGCAGCAACAAGGAGCAACAGGTCACTGTCAGCCACACCTACAAGATCGATGTGCCCAAGTCTGCCTTGGTTCAGGTTGACGCTGACCCTCAGCCCCTCAGTGACGATGGGGCTTCGCTCTTGGCCCTGGGGGAGGCCAGGGAGGAACAGAACATCATCTTCAGGCACAACATCCGCCTTCAGACGCCACAGAAGGACTGCGAGTTGGCAGGCAGTGTCCAGGACCTCCTGGCCCGGGTGAAGAAGCTGGAGGAAGAGATGGTGGAGATGAAGGAACAGTGTAGTGCCCAGCGCTGCTGCCAGGGAGTCACTGATCTAAGCCGCCACTGCAGCGGCCACGGGACCTTCTCCCTGGAGACCTGCAGCTGCCACTGCGAAGAGGGCAGGGAGGGCCCCGCCTGCGAGCGGCTGGCCTGCCCCGGGGCGTGCAGCGGCCACGGGCGTTGCGTGGACGGGCGCTGCCTGTGCCATGAGCCCTACGTGGGTGCCGACTGCGGCTACCCGGCCTGCCCTGAGAACTGCAGCGGACACGGCGAGTGCGTGCGCGGCGTGTGCCAGTGCCACGAAGACTTCATGTCGGAGGACTGCAGCGAGAAGCGCTGTCCCGGCGACTGCAGCGGCCACGGCTTCTGTGACACGGGCGAGTGCTACTGCGAGGAGGGCTTCACAGGCCTGGACTGTGCCCAGGTGGTCACCCCACAGGGCCTGCAGCTGCTCAAGAACACGGAGGATTCTCTGCTGGTGAGCTGGGAGCCCTCCAGCCAGGTGGATCACTACCTCCTCAGCTACTACCCCCTGGGGAAGGAGCTCTCTGGGAAGCAGATCCAAGTGCCCAAGGAGCAGCACAGCTATGAGATTCTTGGTTTGCTGCCTGGAACCAAGTACATAGTCACCCTGCGTAACGTCAAGAATGAAGTTTCTAGCAGCCCACAGCATCTACTTGCCACCACAGACCTTGCTGTGCTTGGCACTGCCTGGGTGACAGATGAGACTGAGAACTCCCTTGACGTGGAGTGGGAAAACCCCTCAACTGAGGTGGACTACTACAAGCTGCGATATGGCCCCATGACAGGACAGGAGGTAGCTGAGGTCACTGTGCCCAAGAGCAGTGACCCCAAGAGCCGATATGACATCACTGGTCTGCACCCGGGGACTGAGTATAAGATCACGGTGGTGCCCATGAGAGGAGAGCTGGAGGGCAAGCCGATCCTCCTGAATGGCAGGACAGAAATTGACAGTCCAACCAATGTTGTCACTGATCGAGTGACTGAAGACACAGCAACTGTCTCCTGGGACCCAGTGCAGGCTGTCATAGACAAGTATGTAGTGCGCTACACTTCTGCTGATGGGGACACCAAGGAAATGGCAGTGCACAAGGATGAGAGCAGCACTGTCCTGACGGGCCTGAAGCCAGGAGAGGCATACAAGGTCTACGTGTGGGCTGAAAGGGGCAACCAGGGGAGCAAGAAAGCTGACACCAATGCCCTCACAGAAATTGACAGCCCAGCAAACCTGGTGACTGACCGGGTGACTGAGAATACCGCCACCATCTCCTGGGACCCGGTACAGGCCACCATTGACAAGTACGTGGTGCGCTACACCTCTGCTGACGACCAAGAGACCAGAGAGGTTCTGGTGGGGAAGGAGCAGAGCAGCACTGTCCTGACAGGCCTGAGGCCAGGTGTGGAGTACACAGTGCATGTCTGGGCCCAGAAGGGGGACCGAGAGAGCAAGAAGGCTGACACCAACGCCCCGACAGATATTGACAGCCCCAAAAACCTGGTGACTGACCGGGTGACAGAGAATATGGCCACGGTCTCCTGGGACCCGGTGCAGGCCGCCATTGACAAGTACGTGGTGCGCTACACCTCTGCTGGTGGAGAGACCAGGGAGGTTCCGGTGGGGAAGGAGCAGAGCAGCACAGTCCTGACAGGCCTGAGACCGGGTATGGAGTACATGGTGCACGTGTGGGCCCAGAAGGGGGACCAGGAGAGCAAGAAGGCCGACACCAAGGCCCAGACAGACATTGACAGCCCCCAAAACCTGGTGACCGACCGGGTGACAGAGAATATGGCCACTGTCTCCTGGGACCCGGTGCGGGCCACCATTGACAGGTATGTGGTGCGCTACACCTCTGCCAAGGACGGAGAGACCAGGGAGGTTCCGGTGGGGAAGGAGCAGAGTAGCACTGTCCTGACGGGCCTGAGGCCGGGTGTGGAGTACACGGTGCACGTGTGGGCCCAGAAGGGGGCCCAGGAGAGCAAGAAGGCTGACACCAAGGCCCAGACAGACATTGACAGCCCCCAAAACCTGGTCACTGACTGGGTGACAGAGAATACAGCCACTGTCTCCTGGGACCCGGTGCAGGCCACCATTGACAGGTATGTGGTGCACTACACGTCTGCCAACGGAGAGACCAGGGAGGTTCCAGTGGGGAAGGAGCAGAGCAGCACTGTCCTGACGGGCCTGAGGCCGGGCATGGAGTACACGGTGCACGTGTGGGCCCAGAAGGGGAACCAGGAGAGCAAGAAGGCTGACACCAAGGCCCAGACAGAAATTGACGGCCCCAAAAACCTAGTGACTGACTGGGTGACGGAGAATATGGCCACTGTCTCCTGGGACCCGGTTCAGGCCACCATTGACAAGTACATGGTGCGCTACACCTCTGCTGACGGAGAGACCAGGGAGGTTCCGGTGGGGAAGGAGCACAGCAGCACTGTCCTGACGGGCCTGAGACCAGGCATGGAGTACATGGTGCACGTGTGGGCCCAGAAGGGGGCCCAGGAGAGCAAGAAGGCTGACACCAAGGCCCAGACAGAACTCGACCCTCCCAGAAACCTTCGTCCATCTGCTGTAACGCAGTCTGGTGGCATATTGACCTGGACGCCCCCCTCTGCTCAGATCCACGGCTACATTCTGACTTACCAGTTCCCAGATGGCACAGTTAAGGAGATGCAGCTGGGACGGGAAGACCAGAGGTTTGCGTTGCAAGGCCTTGAGCAAGGCGCCACCTACCCTGTCTCCCTTGTTGCCTTTAAGGGTGGTCGCCGGAGCAGAAATGTATCCACCACCCTCTCCACAGTTGGTGCCCGTTTCCCACACCCTTCGGACTGCAGTCAGGTTCAGCAGAACAGCAATGCCGCCAGTGGTCTGTACACCATCTACCTGCATGGCGATGCCAGCCGGCCCCTGCAGGTGTACTGTGACATGGAAACGGACGGAGGTGGCTGGATTGTCTTCCAGAGGCGGAACACTGGGCAGCTGGATTTCTTCAAGCGATGGAGGAGCTATGTGGAAGGCTTTGGGGACCCCATGAAGGAGTTCTGGCTTGGACTTGACAAGCTACACAACCTCACCACCGGCACTCCAGCGCGGTATGAGGTGAGAGTGGATTTACAGACTGCCAATGAATCTGCCTATGCTATATATGATTTCTTCCAAGTGGCCTCCAGCAAGGAGCGGTATAAGCTGACAGTTGGGAAATACAGAGGCACGGCAGGGGATGCTCTTACTTACCACAATGGATGGAAGTTTACAACTTTTGACAGAGACAATGATATCGCACTCAGCAACTGTGCCCTGACACATCATGGTGGCTGGTGGTATAAGAACTGCCACTTGGCCAACCCTAATGGCAGATATGGGGAGACCAAGCACAGTGAGGGGGTGAACTGGGAGCCTTGGAAAGGACATGAATTCTCCATTCCTTACGTGGAGTTGAAAATCCGCCCTCATGGCTACAGCAGGGAGCCTGTCCTGGGCAGAAAGAAGCGGACGCTGAGAGGAAGGCTGCGAACGTTCTGA-3'
NCBI CDS gene sequence with introns (location: 175077419.. 175147071) (69653 bp)Download
NCBI CDS gene sequence with introns, 5'UTR and 3'UTR (location: 175067833.. 175148075) (80243 bp)Download
NCBI gene sequence (location: [175067833 - 1000].. 175148075) (81243 bp)Download
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