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Previous release (v1)
2026-10-06 00:36:46, GGRNA.v2 : RefSeq release 233 (Jan, 2026)
LOCUS XM_052376309 3951 bp mRNA linear INV 29-NOV-2022
DEFINITION PREDICTED: Dreissena polymorpha GRIP and coiled-coil
domain-containing protein-like (LOC127845414), transcript variant
X1, mRNA.
ACCESSION XM_052376309
VERSION XM_052376309.1
DBLINK BioProject: PRJNA903932
KEYWORDS RefSeq.
SOURCE Dreissena polymorpha
ORGANISM Dreissena polymorpha
Eukaryota; Metazoa; Spiralia; Lophotrochozoa; Mollusca; Bivalvia;
Autobranchia; Heteroconchia; Euheterodonta; Imparidentia;
Neoheterodontei; Myida; Dreissenoidea; Dreissenidae; Dreissena.
COMMENT MODEL REFSEQ: This record is predicted by automated computational
analysis. This record is derived from a genomic sequence
(NC_068363) annotated using gene prediction method: Gnomon.
Also see:
Documentation of NCBI's Annotation Process
##Genome-Annotation-Data-START##
Annotation Provider :: NCBI RefSeq
Annotation Status :: Full annotation
Annotation Name :: Dreissena polymorpha Annotation
Release 100
Annotation Version :: 100
Annotation Pipeline :: NCBI eukaryotic genome annotation
pipeline
Annotation Software Version :: 10.0
Annotation Method :: Best-placed RefSeq; Gnomon
Features Annotated :: Gene; mRNA; CDS; ncRNA
##Genome-Annotation-Data-END##
FEATURES Location/Qualifiers
source 1..3951
/organism="Dreissena polymorpha"
/mol_type="mRNA"
/isolate="Duluth1"
/db_xref="taxon:45954"
/chromosome="9"
/sex="male"
/tissue_type="Whole animal"
/dev_stage="adult"
/geo_loc_name="USA: Lake Superior, Duluth, MN"
/lat_lon="46.78671 N 92.09114 W"
/collection_date="2017-06"
gene 1..3951
/gene="LOC127845414"
/note="GRIP and coiled-coil domain-containing
protein-like; Derived by automated computational analysis
using gene prediction method: Gnomon."
/db_xref="GeneID:127845414"
CDS 35..1909
/gene="LOC127845414"
/codon_start=1
/product="GRIP and coiled-coil domain-containing
protein-like isoform X1"
/protein_id="XP_052232269.1"
/db_xref="GeneID:127845414"
/translation="
MGKSGCLPPGSCRWIVQFKKSMNARMAKFRNDFRKKFFRDNKHLGTLSADKLLNETGTSDMEITKTTSKPSANSTVSQKKESKALNLIKESTENLTKRHNVDTTGGHVIKDTNTTKEHVVIDTDSKNEDVIIDTDTTNEHFVIDTDTTNEHVVINTDTDNEHVVIATDTTNEQVVIDTDTTNECVAMDTETTNEHVAIDTDTSKVHVVIDTDINNEDVILYTDTTNGHVVIDTDTNEHVVNDTDIINEHVVIDTDTTNGHVVIDTDTTNENVVIDADITKENVVIETDTSNEHVVIDTDTTNEYVIIDTDTTNGHVVIDTDTTNEHVVIATDTTNENVVIETDTTNEHVVIYTDTTTENVVIDAETTNENVVIETDTSNEHVVIDTDTTNEHVVIATDSTNENVVIETDTTNEHVVIDTDTTNENVVIDTDTTNENVVIETDTSNEHVVIDTDTTNEYVVIDTDTTNGHVVIDTDTTNEHVVIATDTTNENVVIETDTTNEHVVIYIDTTNGHVVIDTDNTNEYNAITVFEASTEIVLKEHDGNVETTVEHVVKDTGSVPVSSSVLSALADGAVKSSLYEIDDVNKSAVVPRSAGKARKTRKTLNFFLRMFGLQGWSCFCDVVM"
misc_feature 332..>1591
/gene="LOC127845414"
/note="Autotransporter adhesin AidA [Cell
wall/membrane/envelope biogenesis, Intracellular
trafficking, secretion, and vesicular transport]; Region:
AidA; COG3468"
/db_xref="CDD:442691"
polyA_site 3951
/gene="LOC127845414"
/experiment="COORDINATES: polyA evidence [ECO:0006239]"
ORIGIN
tgcattgaacaacatacacggcaactacaaaaaaatggggaagtcaggatgtttaccgcccggcagctgtcggtggatcgtacagttcaagaagtcaatgaatgccaggatggcgaaattccggaatgactttcggaagaagttttttcgcgacaacaagcatctgggaaccctgagtgccgacaaactcctcaacgagacgggaaccagtgatatggaaatcacgaaaacgacgtccaagccttcagcgaacagtactgtctctcaaaagaaggaatccaaggcccttaaccttatcaaggagtccacagaaaacttgacgaagagacacaatgtcgacactaccggcggacacgttatcaaggataccaataccaccaaagaacatgttgtcattgataccgacagcaaaaacgaagacgttatcattgataccgacaccaccaatgaacattttgtcattgataccgacaccaccaacgaacacgttgtcattaataccgacaccgacaacgaacacgttgtgattgctaccgacaccaccaacgaacaagttgtcattgataccgacaccacgaacgaatgcgttgccatggataccgaaaccaccaatgaacacgttgccattgataccgacacctccaaagtgcacgttgtcattgataccgacatcaacaacgaagatgtaatcctttataccgacacgaccaacggacacgttgttattgataccgacaccaacgaacacgttgtcaacgataccgacatcatcaacgaacacgtggtcattgataccgacacgaccaacggacacgttgtcattgataccgacaccaccaacgaaaacgttgttattgatgccgacatcaccaaagaaaacgttgtcattgaaaccgacacgtccaacgaacacgttgtcattgataccgacaccaccaacgaatacgtgatcattgataccgacacgaccaacggacacgttgtcattgataccgacaccaccaacgaacacgttgtgattgctaccgacaccaccaacgaaaacgttgtcattgaaaccgacacgaccaacgaacacgttgtcatttataccgacaccaccaccgaaaacgttgtcattgatgccgaaaccaccaacgaaaacgttgtcattgaaaccgacacgtcgaatgaacacgttgtcattgataccgacaccaccaacgaacacgttgtgattgctaccgacagcaccaacgaaaacgttgtcattgaaaccgacacgaccaacgaacacgttgtcattgataccgacaccaccaatgaaaacgttgtcattgataccgacaccaccaacgaaaacgttgtcattgaaaccgacacgtccaacgaacacgttgtcattgataccgacaccaccaacgaatacgtggtcattgataccgacacgaccaacggacacgttgtcattgataccgacaccaccaacgaacacgttgtgattgctaccgacaccaccaacgaaaacgttgtcattgaaaccgacacgaccaacgaacacgttgtcatttatatcgacaccaccaacggtcacgtggtcattgataccgacaacaccaacgaatacaacgccatcaccgtctttgaggcgtctaccgagatcgtcctgaaggaacacgacggcaatgtcgaaaccaccgtcgaacacgttgtcaaggacacaggcagcgttcccgtatcgtccagcgttttaagcgcgctcgccgatggcgcagtgaagtcaagtctgtacgagattgacgacgtcaacaaatccgctgtggtcccccggtccgccggaaaggctcgcaaaacacgaaagactctgaacttcttcctaaggatgtttgggctgcaaggttggagctgtttctgcgacgttgtcatgtagaggaaacttaagccatagtctcatataagcacggatgctaaggtggactggtgcatttttgagcgtcgactgtattccaaagaccatcaaccggagaaataactttttataacttgtaggtttattttacatgattccatttctgcaattttcactttatcattatccctcagcacataatattgaacacattattatctatgatattcgcgtcttaaatttcatcaaatattagtccacatgacattgttaatacttataactaatcttcatgaaaatgacatgtccatagaatatatctttcaatgacaatgttcatgtcatgtcgtctgccaggacatagatccggcttcagagctgatgtaggccggacgatattagcgttggtgctttgcttccattgtgattgcgctcgaataaagcttcgacgccctatccatgagcgggttgtcgtttcgccattgtcctggtttggtgttgtgataattgtccacctggtcagtttgatgctcattctcagttccatagcgcagtctcaaaagattcgggacgcaaatggaaggcagcacaatttacgtcatcgcctctggagaatgcagaagtgtgtgtagacatcgaaagcgattaacatgaatcccaaacacgttttcaacaatccgtcgcccctttggaaagtcggtagttgaaaactatttgggaatgtgccatgtttttgttagaaaaaggtttaacggaccacttcttccaggcaaatgcgccattcgcagccatgtagaacgcattgatgtgtcgtcgatggcaaatttttcaagattagataggcacaccgatcccttgtcgatagtttgcatcaggtcactgtcgttgagcgctttagcaccactgactgattgattactgcctacttccacttaaatgaacttgtagtcggcgtcacccaacgccatatagttgaatggaatggtaacctttgtagttgtagtgcaagaggcgtgatggttccatgaactacaacagcaatggcaaacattacattaccctgatagccttgaccgacgccgactacaagttcatttggttggaagagggcaacagcaaatcagccgtggtgctaaaatgttcaacaacagcgagctgaagaaaaccatagacaagggagtgttatgctttcctgatcctgaaaatttgccgaaagacgactcatcaatccgtttctacatgtctgcggtagacgcattcgcatggaagaatgggcccgtaaaacatttaactttgaaatacatgtcacattccgagagagtcttcaactatcggctgttcaatggggcgacggattgtggaaattgtgtttgggattcttggccatcgctttcgatgtctacacacacttctgcagtctccagatgaggtgacatctatggtactgtcttgcatctgcgtaccgaatctcttgagactgtgcgatggaaataagaatgtgagtgtagctgaccaggatgacaacaataccaacatcataccaggacaatgacgaaacgttaacccgcttaaagattgggtgtcgacgctttctatgaaatcaaccacagtggaagcaaagaaccaatgtgaatatcttcgagtccacttcagctcagaagccggatctgtgtcatgtcaggacgacatgatgtgaacattgtaattgtacgaaatactctatagatttgtcattttcatgtagtttggttataattacgaacacttttttgtggacttatatgcaatgaaattattgaatatactcaattttatatccagttgggataaagatatttagtttcatagtaaaaaacactcgtttattctaatatttcgcccaaatgggctttatcaaagtttgcaaatacgaattttctacataattgtaactgtcatgtacatcaataaagtaaatcagggacgatttagaactgccgtagctatctgtgcttatatgggacttgggtttaatatatctagaaaaaatgtttgtataaattagaaataaatgtttttgattt
//
by
@meso_cacase at
DBCLS
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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