2024-11-01 12:42:57, GGRNA.v2 : RefSeq release 226 (Sep, 2024)
LOCUS NM_001040314 2208 bp mRNA linear VRT 11-JUL-2020 DEFINITION Danio rerio claudin 15b (cldn15b), mRNA. ACCESSION NM_001040314 VERSION NM_001040314.1 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 2208) AUTHORS Bruch-Bertani JP, Uribe-Cruz C, Pasqualotto A, Longo L, Ayres R, Beskow CB, Barth AL, Lima-Morales D, Meurer F, Tayguara Silveira Guerreiro G, da Silveira TR, Alvares-da-Silva MR and Dall'Alba V. TITLE Hepatoprotective Effect of Probiotic Lactobacillus rhamnosus GG Through the Modulation of Gut Permeability and Inflammasomes in a Model of Alcoholic Liver Disease in Zebrafish JOURNAL J Am Coll Nutr 39 (2), 163-170 (2020) PUBMED 31241423 REFERENCE 2 (bases 1 to 2208) 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 2208) AUTHORS McKee R, Gerlach GF, Jou J, Cheng CN and Wingert RA. TITLE Temporal and spatial expression of tight junction genes during zebrafish pronephros development JOURNAL Gene Expr. Patterns 16 (2), 104-113 (2014) PUBMED 25460834 REFERENCE 4 (bases 1 to 2208) AUTHORS Baltzegar DA, Reading BJ, Brune ES and Borski RJ. TITLE Phylogenetic revision of the claudin gene family JOURNAL Mar Genomics 11, 17-26 (2013) PUBMED 23726886 REFERENCE 5 (bases 1 to 2208) AUTHORS Wilkins BJ and Pack M. TITLE Zebrafish models of human liver development and disease JOURNAL Compr Physiol 3 (3), 1213-1230 (2013) PUBMED 23897685 REMARK Review article COMMENT PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. The reference sequence was derived from BC115253.1. ##Evidence-Data-START## Transcript exon combination :: BC115253.1 [ECO:0000332] RNAseq introns :: single sample supports all introns SAMEA3505388, SAMEA4476765 [ECO:0000348] ##Evidence-Data-END## FEATURES Location/Qualifiers source 1..2208 /organism="Danio rerio" /mol_type="mRNA" /db_xref="taxon:7955" /chromosome="5" /map="5" gene 1..2208 /gene="cldn15b" /gene_synonym="zgc:136755" /note="claudin 15b" /db_xref="GeneID:678556" /db_xref="ZFIN:ZDB-GENE-060421-7652" exon 1..382 /gene="cldn15b" /gene_synonym="zgc:136755" /inference="alignment:Splign:2.1.0" misc_feature 58..60 /gene="cldn15b" /gene_synonym="zgc:136755" /note="upstream in-frame stop codon" CDS 166..855 /gene="cldn15b" /gene_synonym="zgc:136755" /codon_start=1 /product="claudin-15b precursor" /protein_id="NP_001035404.1" /db_xref="GeneID:678556" /db_xref="ZFIN:ZDB-GENE-060421-7652" /translation="
MQNILQIFALLLGFLGCGSAVLSLYNHYWKVSTDDDSVIITSNIFENLWMSCADDSSGTFSCRDFQSLLALPGYIQACRALIITSIVLGTFGLVATLVGMQCFKIGGGNYIMKSRIAGAGGVFFILQGLCTMTAVSWYAFNITQEFFDPLYPGIKYEIGEGLYIGWSSATLALCSGSCLLCSCGLCTPMGKKSFRQSHLQDFRSSHQPQSINIVPTVSTTSHYLSRQYV"
sig_peptide 166..225 /gene="cldn15b" /gene_synonym="zgc:136755" /inference="COORDINATES: ab initio prediction:SignalP:4.0" misc_feature 193..693 /gene="cldn15b" /gene_synonym="zgc:136755" /note="PMP-22/EMP/MP20/Claudin family; Region: PMP22_Claudin; cl21598" /db_xref="CDD:473919" exon 383..547 /gene="cldn15b" /gene_synonym="zgc:136755" /inference="alignment:Splign:2.1.0" exon 548..629 /gene="cldn15b" /gene_synonym="zgc:136755" /inference="alignment:Splign:2.1.0" exon 630..752 /gene="cldn15b" /gene_synonym="zgc:136755" /inference="alignment:Splign:2.1.0" exon 753..2172 /gene="cldn15b" /gene_synonym="zgc:136755" /inference="alignment:Splign:2.1.0" ORIGIN
tttctgttgacttttgtcaaaactctcgacttctatattaaatctatatttcacaagtaaaacggcaagacaagcaatctatatcgcttggaatgtgcactatggacagcagaacatagactgatctctagccaccttggaaataccttagaaagatcaagaaaaatgcaaaatattctgcaaatatttgcacttttattgggttttttgggttgtgggtctgctgtattatcattatataatcactattggaaagtgtctacagatgatgatagtgtcattatcacctccaacatctttgagaacctctggatgtcctgtgcagatgactcttctggcactttcagttgtcgggattttcagtccttgcttgctttaccaggttacatccaagcatgtcgtgcactaataattacatccattgtgcttggcacatttgggctggtagcaactctggtaggtatgcagtgtttcaaaataggaggaggcaattacataatgaagagtagaatcgctggagctggaggtgtgttcttcatactgcaaggtctgtgcacaatgactgcagtgtcttggtatgctttcaatatcactcaggaattctttgacccgctttacccaggaataaagtatgaaattggagaagggctgtacattggttggagttcagccacgctggctttatgcagtggtagttgcttgctgtgttcctgtggattgtgcaccccgatggggaaaaagtcattccgtcaatcccatcttcaggacttcagatcttcacaccagcctcaatccattaatattgttccaacagtttctacaacatctcactatctttcaaggcaatatgtttagttaatgcaatgaattagtcagaccatcaaaatcgctagggcacttcagctcattttgaaagggcactttctatctaagactaaaaagggcatgtgcactgcacaggttgaaaactatgtgtgcatgtgcctgtggacaagaacggtcacttttttttatgttaacatgttctgaagttttctggataagttatgtaaatgtcttttgaaagaatttctttctttctttcttttttaacaattaatgctgaaaaggcatggccactatttttgtgcctgaaccttattgaatatacatttgtaggagttgcaagaatctgagagctcactgatcctccaaaggcaaatccagaaaggtaccaaaacattcctaaaaaagtggaagttaattttgagagcacgcaacttcatttctacgtttcgagtctggccaaactggatgaatgtgcacatgccaacatcattaggtacccaaaacagctgcctgatgttaagtcctataggtgtttttgttttgttttttttttactttgtgtacaaaatatttattgttgttcctcagactgtccgaagcttcttaggtaaattacttttaatggtatatgaagttttgcattcaagcagtcaattgtcttgaaaatataaaactcagcctaaattattcatttgcacaagtgtacttaaagcaaagattttcacgagtgccctaaaaactattccacaatttattcatcgcatacgtaaactagcaatttaaatcaattaataaatcacacacaaacatgttttgtcgtaagatgcccccttttgttaaaaataaaagctcgatgatagtacaaataataataccattataaatctagatcatgacaataatccagaaactagtcactgacaaagaatgctacaataagggttctgctttccacacttgccactatacgacaacttgtgctatgcttggtatatactgctttggtcggtacgcaaatgagattttatgtctgtgtatgcaaaatgtcagttaatcacctacagtgattttgcaattcccattttcatttagttaatctagtttttttttttatatatatatattcacagatcagttaataggctaagatcagtattgctgtaactagatctaacaaattcttactactcttttaacaaaggagtatatgccctgctgaaagatgattaccccagcaataaatacaaatgttatcaaagtaaagttcagtgaataaccactgcttctgatgggaccatgtaaatatattattaaagctaataataaagacaatccagaattgtaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa
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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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