2025-04-03 20:26:02, GGRNA.v2 : RefSeq release 228 (Jan, 2025)
LOCUS NM_213389 2082 bp mRNA linear VRT 16-SEP-2024 DEFINITION Danio rerio transmembrane 9 superfamily member 3 (tm9sf3), mRNA. ACCESSION NM_213389 VERSION NM_213389.1 KEYWORDS RefSeq. SOURCE Danio rerio (zebrafish) ORGANISM Danio rerio Eukaryota; Metazoa; Chordata; Craniata; Vertebrata; Euteleostomi; Actinopterygii; Neopterygii; Teleostei; Ostariophysi; Cypriniformes; Danionidae; Danioninae; Danio. REFERENCE 1 (bases 1 to 2082) AUTHORS Bayes A, Collins MO, Reig-Viader R, Gou G, Goulding D, Izquierdo A, Choudhary JS, Emes RD and Grant SG. TITLE Evolution of complexity in the zebrafish synapse proteome JOURNAL Nat Commun 8, 14613 (2017) PUBMED 28252024 REMARK Publication Status: Online-Only REFERENCE 2 (bases 1 to 2082) AUTHORS Pasquier J, Cabau C, Nguyen T, Jouanno E, Severac D, Braasch I, Journot L, Pontarotti P, Klopp C, Postlethwait JH, Guiguen Y and Bobe J. TITLE Gene evolution and gene expression after whole genome duplication in fish: the PhyloFish database JOURNAL BMC Genomics 17, 368 (2016) PUBMED 27189481 REMARK Publication Status: Online-Only REFERENCE 3 (bases 1 to 2082) AUTHORS Gomez-Marin C, Tena JJ, Acemel RD, Lopez-Mayorga M, Naranjo S, de la Calle-Mustienes E, Maeso I, Beccari L, Aneas I, Vielmas E, Bovolenta P, Nobrega MA, Carvajal J and Gomez-Skarmeta JL. TITLE Evolutionary comparison reveals that diverging CTCF sites are signatures of ancestral topological associating domains borders JOURNAL Proc Natl Acad Sci U S A 112 (24), 7542-7547 (2015) PUBMED 26034287 REFERENCE 4 (bases 1 to 2082) AUTHORS Pruvot B, Laurens V, Salvadori F, Solary E, Pichon L and Chluba J. TITLE Comparative analysis of nonaspanin protein sequences and expression studies in zebrafish JOURNAL Immunogenetics 62 (10), 681-699 (2010) PUBMED 20820770 REMARK GeneRIF: A conserved TRAF2 binding domain is predicted in the cytoplasmic regions of TM9SF3. REFERENCE 5 (bases 1 to 2082) AUTHORS Bailey SD, Xie C, Do R, Montpetit A, Diaz R, Mohan V, Keavney B, Yusuf S, Gerstein HC, Engert JC and Anand S. CONSRTM DREAM investigators TITLE Variation at the NFATC2 locus increases the risk of thiazolidinedione-induced edema in the Diabetes REduction Assessment with ramipril and rosiglitazone Medication (DREAM) study JOURNAL Diabetes Care 33 (10), 2250-2253 (2010) PUBMED 20628086 REMARK GeneRIF: Observational study of gene-disease association, gene-environment interaction, and pharmacogenomic / toxicogenomic. (HuGE Navigator) REFERENCE 6 (bases 1 to 2082) AUTHORS Talmud PJ, Drenos F, Shah S, Shah T, Palmen J, Verzilli C, Gaunt TR, Pallas J, Lovering R, Li K, Casas JP, Sofat R, Kumari M, Rodriguez S, Johnson T, Newhouse SJ, Dominiczak A, Samani NJ, Caulfield M, Sever P, Stanton A, Shields DC, Padmanabhan S, Melander O, Hastie C, Delles C, Ebrahim S, Marmot MG, Smith GD, Lawlor DA, Munroe PB, Day IN, Kivimaki M, Whittaker J, Humphries SE and Hingorani AD. CONSRTM ASCOT investigators; NORDIL investigators; BRIGHT Consortium TITLE Gene-centric association signals for lipids and apolipoproteins identified via the HumanCVD BeadChip JOURNAL Am J Hum Genet 85 (5), 628-642 (2009) PUBMED 19913121 REMARK GeneRIF: Observational study of gene-disease association. (HuGE Navigator) REFERENCE 7 (bases 1 to 2082) AUTHORS Kalen M, Wallgard E, Asker N, Nasevicius A, Athley E, Billgren E, Larson JD, Wadman SA, Norseng E, Clark KJ, He L, Karlsson-Lindahl L, Hager AK, Weber H, Augustin H, Samuelsson T, Kemmet CK, Utesch CM, Essner JJ, Hackett PB and Hellstrom M. TITLE Combination of reverse and chemical genetic screens reveals angiogenesis inhibitors and targets JOURNAL Chem Biol 16 (4), 432-441 (2009) PUBMED 19389629 REFERENCE 8 (bases 1 to 2082) AUTHORS Song HD, Sun XJ, Deng M, Zhang GW, Zhou Y, Wu XY, Sheng Y, Chen Y, Ruan Z, Jiang CL, Fan HY, Zon LI, Kanki JP, Liu TX, Look AT and Chen Z. TITLE Hematopoietic gene expression profile in zebrafish kidney marrow JOURNAL Proc Natl Acad Sci U S A 101 (46), 16240-16245 (2004) PUBMED 15520368 COMMENT PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. The reference sequence was derived from BC046021.1. ##Evidence-Data-START## Transcript exon combination :: BC046021.1 [ECO:0000332] RNAseq introns :: mixed sample support SAMEA3505370, SAMEA3505371 [ECO:0006172] ##Evidence-Data-END## FEATURES Location/Qualifiers source 1..2082 /organism="Danio rerio" /mol_type="mRNA" /db_xref="taxon:7955" /chromosome="13" /map="13" gene 1..2082 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /note="transmembrane 9 superfamily member 3" /db_xref="GeneID:406698" /db_xref="ZFIN:ZDB-GENE-040426-2714" exon 1..190 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" misc_feature 89..91 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /note="upstream in-frame stop codon" CDS 98..1858 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /codon_start=1 /product="transmembrane 9 superfamily member 3 precursor" /protein_id="NP_998554.1" /db_xref="GeneID:406698" /db_xref="ZFIN:ZDB-GENE-040426-2714" /translation="
MGLCKWTFEVVALTAVFSSFIPVRADEHEHKYTDKEEVVLWMNTVGPYHNRQETYKYFSLPFCVGTKKTISHYHETLGEALQGVELEFSGLDIKFKEEVLQTTYCDIELDKPKRDAFVYAIKNHYWYQMYIDDLPIWGIVGEADENGEDYYLWTYKKLEIGHNGNRIVDVNLTSEGKVKLVPNTRIPMSYSVKWKKSDVKFEDRFDKYLDPSFFQHRIHWFSIFNSFMMVIFLVGLVSMILMRTLRKDYARYSKEEEMDDMDRDPGDEYGWKQVHGDVFRPSSHPLIFSSLIGSGCQIFSVSLIVIILAMIEDLYTERGSMLSTAIFVYAATSPVNGYFGGSLYAKQGGRRWIKQMFIGAFLIPAMVCGTAFFINFIAIYYHASRAIPFGTMVAVCCICLFVILPLNLVGTILGRNLSGQPNFPCRVNAVPRPIPEKKWFMEPAVIVCLGGILPFGSIFIEMYFIFTSFWAYKIYYVYGFMMLVLVILCIVTVCVTIVCTYFLLNAEDYRWQWTSFLSAASTAVYVYMYSFYYYFFKTKMYGLFQTSFYFGYMAVFSTALGIMCGAVGYMGTSAFVRKIYTNVKID"
sig_peptide 98..172 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="COORDINATES: ab initio prediction:SignalP:4.0" misc_feature 257..1666 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /note="Endomembrane protein 70; Region: EMP70; pfam02990" /db_xref="CDD:460774" exon 191..386 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 387..509 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 510..670 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 671..748 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 749..880 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 881..1047 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 1048..1142 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 1143..1273 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 1274..1413 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 1414..1482 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 1483..1629 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 1630..1713 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 1714..1790 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" exon 1791..2057 /gene="tm9sf3" /gene_synonym="fb75h12; wu:fa94f05; wu:fb75h12; zgc:56246" /inference="alignment:Splign:2.1.0" ORIGIN
aagacaaccactgtcatagaaccaggaagaaggaaggtgggatagcccccaaaaagataccatttcaaatcagtcgcagaattttccctagaaaaccatggggctctgcaagtggacgtttgaagtggttgccttgacggctgtttttagttcgttcataccagttcgagcagatgaacacgagcacaagtacacagataaagaagaggtggttttatggatgaatacagtgggcccttatcacaaccgacaggagacctataagtacttctccctaccgttctgtgtgggaacgaaaaaaactattagtcattatcatgagacattaggagaggcgctacagggggttgaattggagttcagcggtctggacatcaagttcaaagaggaggtgttgcagacgacatactgtgacattgaactagacaaacctaaaagagatgcatttgtctatgccatcaagaaccactactggtaccaaatgtacatagatgaccttcccatctggggaattgttggtgaagctgatgagaatggagaggactattacctttggacttacaaaaagctggagatcggacataatgggaacagaattgtggatgttaacctaaccagtgagggcaaggttaagcttgttccaaacacgagaattcccatgtcatactctgtcaagtggaagaaatctgatgtgaaatttgaggatagatttgacaaataccttgatccatctttctttcaacacagaattcactggttctcaatattcaactcattcatgatggtgattttcctggtgggccttgtttcaatgatcctgatgagaacattaaggaaagactatgccagatacagcaaagaggaggaaatggatgacatggatcgtgatcctggtgatgaatatggctggaagcaggttcacggggatgtgttcaggccatccagtcacccgctgatcttctcctccctcattggctctggctgtcaaattttttcagtttcccttatagtcataattttggccatgattgaggacttgtatacagagagagggtccatgttgagtacagccatatttgtttatgctgccacgtctccagtcaatggctactttggtggaagcctatatgcaaaacaaggagggagaagatggataaagcagatgttcattggagccttcctgattcctgcaatggtgtgtggtacagcgtttttcatcaacttcatcgccatctactaccatgcctcaagagcaatcccattcggcactatggttgcggtgtgctgcatctgcttatttgtaattctacctctgaacctggtggggacgatcctgggcagaaacctctccggacagcccaactttccttgtagagtcaatgctgtacccagacccatcccagaaaagaaatggtttatggagccagcagttatcgtgtgtttaggtggcatccttccattcggctcgatattcattgaaatgtacttcattttcacatctttctgggcctacaagatttactatgtgtatggatttatgatgctggtgctggtgatcctgtgcatcgttactgtctgcgtcaccattgtctgcacctacttccttctcaatgcagaagactacagatggcagtggacaagctttctctctgcagcgtcaacagcagtttatgtttacatgtactccttctactactatttcttcaaaacaaagatgtatggcttattccagacgtcattctactttggctacatggctgtgttcagcactgctctgggaatcatgtgtggagcggtgggttacatgggaacaagtgcctttgtgaggaagatctacacaaatgtgaaaatcgactaaaactctgcagagacgcagcagaagagccgacacttcctcccgatcgaaacgggcacaaagtctccatttattttgcaagatgagattgtggtatcttgtacaaaatctagttttccattttctcaatgaattaaacgttgcggcatgatgcatacacaagggtaaaccgagaggttaaataaacaggacttttaattttaaaaaaaaaaaaaaaaaaaaaaaaa
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Creative Commons Attribution 4.0 International License (CC BY 4.0).
If you use GGRNA in your work, please cite:
Naito Y, Bono H. (2012)
GGRNA: an ultrafast, transcript-oriented search engine for genes and transcripts.
Nucleic Acids Res., 40, W592-W596.
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