2024-11-15 21:53:29, GGRNA.v2 : RefSeq release 226 (Sep, 2024)
LOCUS XM_019508806 6093 bp mRNA linear VRT 16-DEC-2016 DEFINITION PREDICTED: Gavialis gangeticus testis and ovary specific PAZ domain containing 1 (TOPAZ1), transcript variant X1, mRNA. ACCESSION XM_019508806 VERSION XM_019508806.1 DBLINK BioProject: PRJNA357062 KEYWORDS RefSeq. SOURCE Gavialis gangeticus (Gharial) ORGANISM Gavialis gangeticus Eukaryota; Metazoa; Chordata; Craniata; Vertebrata; Euteleostomi; Archelosauria; Archosauria; Crocodylia; Longirostres; Gavialidae; Gavialinae; Gavialis. COMMENT MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017729006.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Gavialis gangeticus Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## FEATURES Location/Qualifiers source 1..6093 /organism="Gavialis gangeticus" /mol_type="mRNA" /isolate="Ggan-Ray" /db_xref="taxon:94835" /chromosome="Unknown" /sex="female" /tissue_type="blood" gene 1..6093 /gene="TOPAZ1" /note="Derived by automated computational analysis using gene prediction method: Gnomon. Supporting evidence includes similarity to: 2 Proteins, and 100% coverage of the annotated genomic feature by RNAseq alignments, including 1 sample with support for all annotated introns" /db_xref="GeneID:109291713" CDS 665..6004 /gene="TOPAZ1" /codon_start=1 /product="testis- and ovary-specific PAZ domain-containing protein 1 isoform X1" /protein_id="XP_019364351.1" /db_xref="GeneID:109291713" /translation="
MGLQESTESPKRRSKHSMVVPTMIVPYEGAGNTIKRGKLSATNLQPINLSLQGGERTVGKRARSSSVKLWQSGSQNEAEILEKASKSFSEGGRLSENKKSSSPERWVTEYVEERLMPSRVSLTGTTRGNRQGKLDKQQASGQEVISAPTNDLFINRLEDDGERQTDGDEETVVSSELKLKIRKPTKKKGMDLNEVSDAQVEKPLETAQNTAKESSVRTSSLVAYSESFQLPQSDGTQSKRSAPRCLARGSAVDCNRTKNKITKIKCLQRLTVQTAENKLTTSKSIECKDECREALKQHNSLLSIAEKNPVVALHDCHYLNTFVKSSVDGSNNSYKIDSGFLHVLHSKTVCPGRVTGQSGMNAVQAERWCAQGIISFDEEGTCQNREKCFSCSLNRNKCFRERKWSSGEKPRKKVKLFERTEKLATQNVLPGRVNSECELHTENKTLATVSLAVLGELNSNKTCLSSSCDLISNAHVENNTKKALNSLPKPVSRKMCMKPGAIEDRFEKNLQLPEAAQREKSFFNAESMAPQDHSNLKSPGVIRLVSDISNCCSDSGSCQKKLLNEKLFKKPEKLQVFSCQRAIPMTGKNVWPRESCARTSVWFPKKDKSIIEKKNSLTSFQGCSHQNTETLRGMDVTDNSKQLDLHMSMTEINKPNACKITDSNTECLASVAILESSLSDINGALRVTKDENLELSLDKGRSSMTFNSGSVQEGKVTLNLSGKQKQDKNKGALKAKNVAMTSQDSMCADNVGKMICNPEMPVTKQTQEFPGLVRMLSTGNLSNFKIPLLRNKNESRKVDYIRSFERETYSPLELLDNSAATPVRQNRTKENSPLVYSDFFLATAKETAYQITNKDFGNDGSERLSDEKKRLAEHVSACPWDFPERELMSPTSEGAFGTEFREKSNVADHSSKIVKHSTSSEVFVNDGKKLKEKPTQSSSTNFPDVLKAYEDDILVIDVIQDDPDLFGTTNEGEFELDCETEITKHGNILTSVEKQNFTPKFHNLQENKDSNYYHGDSPIQESGTLQPIADSCDSLITANEINKHDSSRGSSPLGGVTEESSEDGQLTESDEHTKGSNADEKYRFSGRSSVKEEKDSIYEKSSDSECAEFVSPDLSLGLQLPCLEVKAHHGSTVQKPGMNDFRYSGKCPLLPHPNSNCYEPWKMDKSVPVSYSIQKILEIELPRKYCRFYFNTLRGCERAECWFWHIPEQGDEKICMAVLRTYININETSLLQRAVQIFMNYYREVTPGVHFDLQVLNDLLIALLKHCLLKEVFLLLNVGIMIKRLPPIDVILKVLEHVASTNIREAVPTLIDAFCKLFDAGMGFESEHFNYIVKFLHQLQVSSQEINAILNIKSRFQAKQFKKNWLCDINMAIAEIQHCKEKSDWSSLGTLYINVRMGCQNFGDLQKLTLCIAEILTRDSTEERPGVPFCEFAETVIKNPQHNEGDKIFLGRIGISVMYSYHRVLQWSKGRKVLDKLHEFQIYFTSLKGLTGPERLASRCQIVNVAAEIFLKSGSLDGATWVLRDSEWVIDTAVWPCDRMDVLSRHNLLCALACEYLTKSQYRQTFEILQNLPGFQTCCDTLDVSQYSLLFNKLLDACIESKSLGVSSSVIDFMFSKKVPIDFTLLRGLITTLGRSCLWLKARTYYKSALSLGCYPPLEGNLYRKLLLIPSYMSEVEMLLAIEIFLVSNASNIQSPGATSQTLQIILKRCEEHKVQSKDDYRTAMDRVILAARISDPKLFLKHMTMNINMEQVYSLEHNSALKWLKENMKWAGKVWLFQ"
misc_feature 4790..5317 /gene="TOPAZ1" /note="Putative aspartate racemase; Region: Asp_Glu_race_2; pfam14669" /db_xref="CDD:464250" ORIGIN
cagccccccggtcactgggggcagctgtgcgcgggggccaggcgtccccgagcgcggggtaggaggcaggagggaaaaggatggagatgctttgactctggggcagcgagtcctggcctttgagggaaagcataggggcctgaatgaaagaagtggaggcgccgtggtggacgcagggaaaagcaggcagcgctcgttttcagagccaggagtggaggtgcctaaagagccagggagcccagtccatgaggacagatgtgcatcggtggaattggggtctcggggagcagtaaagagccctagaaagaggggcaggcgctgtttgtctgagccaggaccccaggagaaagaaggatgccctggggagaggggtgaaagctttttggcagaagtaggcttgtccgggcctctggataaagaaggcagtctgggaaagcaagacaggctggttgtggaaccaaagttacagaaaccaaagaaaaggggtaggtattccttagggatatggcagccacaaggtgttcaagaactagcaagctcaagaaagacagagaagcattcattagcattggagtcccaaagcttaggccttcaaggaggagcaagtaacttgggggaagtgggtgagcacttctgctctgttttgaagttagagctgcagagcatgggcctccaggaaagtacagagagcccaaagaggaggagtaagcactccatggtagtaccaacaatgatagtcccttatgagggagctgggaatacaataaagagaggcaaattatctgccacaaacctacaaccaataaacttaagccttcagggaggagagagaactgtagggaaaagagccaggagctcctctgtgaaattgtggcaatcaggatcccagaatgaagcagaaattttagagaaagcaagtaaaagtttctctgagggaggaagactctcagaaaacaagaagagttcctcaccagaaagatgggtaactgaatatgtagaggagaggttgatgccaagcagggtttctcttaccgggactactcgagggaacagacaagggaagctggataagcaacaggcttcagggcaagaagttatttctgcacccacaaatgatctgttcattaacagactagaggatgatggtgaaagacagacagatggcgatgaagagactgtggtttcatctgaattaaaattaaagataaggaaacctacaaagaaaaaaggaatggaccttaacgaagtttcagatgcacaagttgaaaagccgctagagactgctcagaatacggcaaaagaatccagtgtaaggacatcatcactagtagcttactctgaatcttttcaactacctcagtcagatgggactcaaagcaagagatcagcaccccgttgtttagcaagaggttctgcagtagattgtaatagaacaaaaaataaaatcaccaagatcaagtgtttacaaagattgactgtacaaacagctgaaaataaactgacaacaagcaaatcaatagaatgtaaagacgagtgcagagaagccttgaaacaacataacagtttgctgtccatagcagaaaagaatccagttgtggcattacatgactgccattaccttaatacttttgtaaagtcttcagttgatggaagcaacaacagttataaaattgatagtggattcttgcatgtactacacagtaaaactgtttgtcctggcagagttactggacagagtggtatgaatgcagtgcaagctgagagatggtgtgcacaggggattatatcatttgatgaagaaggaacatgccaaaacagagagaaatgtttttcatgctctctaaacagaaataagtgcttcagggaaagaaaatggagttctggtgaaaagcccaggaaaaaggtgaagctttttgagagaacagaaaaattagcaacccagaatgttctcccaggcagggtcaacagtgagtgtgaattacatacagaaaataaaactcttgcaacggtttctttggcagttttaggggaattaaatagcaataaaacttgtttgtcatcttcatgtgatctaatatcaaatgcccatgtggaaaataatactaaaaaagcactaaatagtctgcctaaaccagtcagtagaaaaatgtgcatgaaacctggtgccatagaagatagatttgagaagaatcttcagctccctgaagctgcacagagagaaaagtctttctttaatgcagaaagtatggcaccacaagatcattctaacttgaaaagtcctggagtgattagattggtcagtgacatttctaattgctgcagtgattcaggcagttgtcagaaaaaattgttgaatgaaaaactgtttaaaaaacctgagaaattgcaagtattcagctgtcaaagagcaataccaatgactggcaaaaatgtttggcctcgtgaatcttgtgccaggacttctgtatggtttcctaaaaaagataaatccatcatagaaaaaaaaaattccttaacttctttccagggctgttcacatcaaaacaccgaaactttgagaggtatggatgtaactgataactccaagcaattagatctgcatatgtccatgacagaaattaacaaaccaaatgcatgtaaaataacagattctaatacagaatgtttagcttctgttgcaatactagaatcatctctttcagatattaatggggctttgagggtcacaaaagatgaaaacctggagttgtcattagacaaaggtagaagttccatgacttttaactctggcagtgtgcaggaagggaaggtaaccttgaatttgtcaggaaaacaaaaacaagataaaaataaaggtgctttaaaagcaaaaaatgtagccatgacttcccaagatagtatgtgtgctgataatgtaggcaaaatgatctgtaaccctgagatgcctgttacaaaacaaactcaggaatttccaggcttagtgagaatgttaagcacaggaaatctgtcaaatttcaaaattcctttactgagaaataaaaatgagtccaggaaagtggactatattagatcatttgaaagagaaacatacagtccactggaacttcttgacaattctgctgctacacctgtaaggcagaacaggaccaaggagaattcccctttggtatattctgacttttttctggccactgcaaaggaaacagcttaccaaatcaccaataaagactttggaaatgatggttcagaaagactttcagatgaaaaaaaaagacttgctgaacatgtttctgcatgtccatgggactttcctgagagagagttaatgtcacctacttctgagggtgcttttggtactgaatttagagagaaaagtaatgtggctgatcactccagcaaaatagttaaacattctacttcatctgaagtatttgtcaatgatggaaaaaaattgaaagagaagcctacacagagttcatctacaaactttccagatgttcttaaagcgtatgaagatgacattcttgtgatagatgtaattcaggatgaccctgacctttttggaactactaatgaaggggagtttgaactggactgtgaaactgaaattacaaagcatggtaatattctcacctcggtggaaaagcagaattttactcccaaattccataaccttcaagaaaataaggactcaaactattatcatggagacagtcccattcaagaatctggaacattgcaacctatcgcagattcctgtgattccttgataacagctaatgaaattaataaacatgattcttcaagaggaagcagccctttgggaggtgtaacagaggagtcttctgaggatgggcaactgaccgaatcagatgaacacacaaagggttccaatgcagatgagaagtacagattttcaggcagatcttctgtaaaagaagaaaaagacagcatttatgagaaaagcagtgattctgagtgtgcagaatttgtgagccctgatctttcactaggattgcagctgccttgcctggaagtaaaagcccatcatggaagtacagtacagaaacccgggatgaatgatttcagatattcaggcaagtgcccactcttgccacatcccaattctaactgttacgaaccatggaaaatggacaaaagtgtaccagtttcctactccatccagaaaatcctggagattgaattgccccgtaaatattgcagattttatttcaatacactgcgtggctgtgagagagcagaatgttggttttggcatattcctgagcaaggagatgaaaagatttgcatggcagtacttaggacatatataaatattaatgaaacaagtctgctacagcgtgcagtccagatatttatgaattactacagagaagttactcctggtgtgcattttgatttgcaagtgctgaatgaccttctgattgctttgctcaagcattgcttgttgaaggaagtatttctgctgttaaacgttggtataatgattaaaaggctgccacctattgatgtgattctgaaagtgttagaacatgtggcttccacgaatattagagaggctgtgcctacattaatagatgccttttgtaagctttttgatgccggaatgggttttgagtctgaacattttaactatattgttaagttccttcaccaattgcaagtttccagtcaggaaataaatgctattttgaacataaaatccaggtttcaagcaaaacagtttaaaaagaactggctttgtgacataaatatggcaatagctgaaattcagcactgtaaagaaaaaagtgactggtccagtttgggaactttatatataaatgttcgcatgggatgtcagaattttggtgaccttcaaaaattaactctgtgtattgctgaaatactcacacgagactccacagaagagagaccaggagttcctttttgtgagtttgctgaaacagttatcaaaaatccacaacataatgaaggagacaaaatttttctgggaagaattgggatcagtgttatgtattcttatcacagagtactgcagtggtcaaagggcaggaaggttttggataaattacatgagtttcagatatatttcacaagcttaaaaggacttactggtcctgagaggttagcatcaagatgccaaatcgttaatgttgctgcagaaatatttcttaaaagtggaagtctagatggagccacatgggtattaagagattcagaatgggtaatagatacagcagtgtggccctgtgatagaatggatgtcctcagtcgacacaatctgctgtgtgcccttgcatgtgaatatttgactaaaagccagtataggcaaacatttgaaattttgcagaatctaccaggtttccaaacttgctgtgatactctagatgtctctcaatacagccttctttttaacaaacttctagatgcctgtattgagagtaaaagcctgggagtatcttcttctgtaatagatttcatgttttcaaagaaagttcctattgattttactttactgagaggattaattacaacattgggaaggagctgtttatggcttaaagccaggacctattacaaaagtgctttatcattgggttgctatccaccactggaaggaaatttgtatcgcaaacttctgctgattccttcttacatgtctgaagttgagatgctgttggctattgaaatattccttgtttcaaatgctagtaatattcagagtccaggtgctactagtcagacacttcaaatcatactgaaaagatgtgaagaacataaggtgcagagtaaagatgattatcgaacagcaatggacagagtaattctagctgctcgtatatctgatccaaagctttttcttaagcacatgactatgaacattaatatggaacaagtttacagtttggaacataattctgctctaaaatggctgaaggaaaacatgaaatgggctggaaaagtctggctttttcagtagctattagttggtaatgatttttttgaacggttgaagtaatcattgttgaaaataataaaaatcaataaagactgtttccactgtttata
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This page is licensed under a
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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