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Previous release (v1)
2026-09-01 06:00:10, GGRNA.v2 : RefSeq release 233 (Jan, 2026)
LOCUS XM_077414731 5644 bp mRNA linear INV 30-SEP-2025
DEFINITION PREDICTED: Temnothorax americanus copper-transporting ATPase 1
(Atp7), transcript variant X1, mRNA.
ACCESSION XM_077414731
VERSION XM_077414731.1
DBLINK BioProject: PRJNA1327953
KEYWORDS RefSeq.
SOURCE Temnothorax americanus
ORGANISM Temnothorax americanus
Eukaryota; Metazoa; Ecdysozoa; Arthropoda; Hexapoda; Insecta;
Pterygota; Neoptera; Endopterygota; Hymenoptera; Apocrita;
Aculeata; Formicoidea; Formicidae; Myrmicinae; Temnothorax.
COMMENT MODEL REFSEQ: This record is predicted by automated computational
analysis. This record is derived from a genomic sequence
(NW_027509515) 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 :: GCF_048541705.1-RS_2025_09
Annotation Pipeline :: NCBI Eukaryotic Genome Annotation
Pipeline (EGAP)
Annotation Software Version :: 10.5
Annotation Method :: Gnomon; cmsearch; tRNAscan-SE
Features Annotated :: Gene; mRNA; CDS; ncRNA
Annotation Date :: 09/24/2025
##Genome-Annotation-Data-END##
FEATURES Location/Qualifiers
source 1..5644
/organism="Temnothorax americanus"
/mol_type="mRNA"
/isolate="GAGA-0224"
/isolation_source="Broadleaf forest"
/db_xref="taxon:1964332"
/chromosome="Unknown"
/tissue_type="pupae pool"
/geo_loc_name="USA"
/collection_date="2016-06-30"
/collected_by="Susanne Foitzik"
gene 1..5644
/gene="Atp7"
/note="copper-transporting ATPase 1; Derived by automated
computational analysis using gene prediction method:
Gnomon. Supporting evidence includes similarity to: 9
Proteins, and 100% coverage of the annotated genomic
feature by RNAseq alignments, including 28 samples with
support for all annotated introns"
/db_xref="GeneID:143902033"
CDS 777..4679
/gene="Atp7"
/codon_start=1
/product="copper-transporting ATPase 1 isoform X1"
/protein_id="XP_077270857.1"
/db_xref="GeneID:143902033"
/translation="
MVKFRGPLVHRVKLAYRNLKDMTMTNEVEHSISCENIRLLDGDGDDPDSKGITHLVRALRTSEAWQLAQETSTVKIGIEGMTCQSCANNIERVIGNRPDVVGIKVVLEEKAGYIEYKTHEITPRELAEAIEDMGYTASLPSNLTSGNAENKANNSSIPATGTCNIHVDGMTCQSCVKNITDVLSEKPGIKNVNVSLEDKEAKVSYSSGDVTVDQIVMYIEDMGFTAYVKIAKDETSQLDADINKKKKKTELVLQANGAGDVKKQLSKCFLRITGMTHAHHVTGIEKHCKKLYGVNSILVALMAAKAEVTYNPDKIKAADIASCISELGFPTTLIEEFGTEEVEVELKIMGMTCASCVNKIESTVKKLPGVRSAMVALATQRGKFKYDVEMTGVRDIIECINNLGIYTASLFSNRDKENRDYLDQKEEISKWRRTFFISLIFGVPSMVSMTYFMLVMSFGNKTHEEMCCIVPGLSWENLLLFVFSTPVQFFGGWYFYVQAYKALRHGTTNMDVLISMTTTISYLYSIAVLTAAMIMQENVSPQTFFDTPPMLLVFISLGRWLEHVAKGKTSEALSKLLSLKATDAVLVSLGHHKEILTERSISVDMVQRGDILKVVPGAKVPVDGRVLFGESTCDESLITGESMPVQKKEGSMVIGGSINENGSLVITATHTGEHTTLAQIVRLVEEAQTNKAPIQQLADKIAGYFIPLVIVVSLVTLVIWIIIGYMNVEQLPMSHNDQFNKHGLSRVEIIFQYAFRSALAVLAIACPCALGLATPTAVMVGTGVGALNGILIKGAEPLENAHKVKCVVFDKTGTLTHGAPTVTKIELFVEEMVCSLGTLLTVVGTAERNSEHPIAAAIVRYVQDTIGSKTGQCTNFEAVPGCGLKCKVSHLEGALGESLQSENLINYMDQSHNVSTGTYNVNNVRIDKLSIVEKPVTDRQEMQKLNLQLLLEPLRRDSNMIDEIYEMCIGNREWMRRNAINVPQEVDERMVNEENLGHTTVLVAINNLLVAMISVADTVKPEAHLAVYTLKKMGLEVILLTGDNKKTAASIAKQVGIDRVFAEMLPSHKVAKIQQLQKQGLRVAMVGDGVNDSPALAQSDVGIAIASGTDVAVEAADVVLMRNDLLDVIACLDLSRKTVRRIRLNFLFASVYNLLGIPIAAGVFSSFGFFLQPWMSSAAMALSSVSVVGSSLLLKLYRKPTKATLETPGYLEVRFTHSIGRSNDLNTIIVDPFHRGSNDSLNRYKSAMNRSTSTLSRIFGKSKLEVEGHLLGEEADETDLAVDFSNYRKNAKNSMDITSV"
misc_feature 1008..1190
/gene="Atp7"
/note="Heavy-metal-associated domain (HMA) is a conserved
domain of approximately 30 amino acid residues found in a
number of proteins that transport or detoxify heavy
metals, for example, the CPx-type heavy metal ATPases and
copper chaperones. HMA domain...; Region: HMA; cd00371"
/db_xref="CDD:238219"
misc_feature order(1017..1025,1032..1034)
/gene="Atp7"
/note="metal-binding site [ion binding]"
/db_xref="CDD:238219"
misc_feature 1269..1454
/gene="Atp7"
/note="Copper chaperone CopZ [Inorganic ion transport and
metabolism]; Region: CopZ; COG2608"
/db_xref="CDD:442020"
misc_feature 1584..1781
/gene="Atp7"
/note="Copper chaperone CopZ [Inorganic ion transport and
metabolism]; Region: CopZ; COG2608"
/db_xref="CDD:442020"
misc_feature 1809..2003
/gene="Atp7"
/note="Heavy-metal-associated domain (HMA) is a conserved
domain of approximately 30 amino acid residues found in a
number of proteins that transport or detoxify heavy
metals, for example, the CPx-type heavy metal ATPases and
copper chaperones. HMA domain...; Region: HMA; cd00371"
/db_xref="CDD:238219"
misc_feature order(1827..1835,1842..1844)
/gene="Atp7"
/note="metal-binding site [ion binding]"
/db_xref="CDD:238219"
misc_feature 2073..4319
/gene="Atp7"
/note="P-type heavy metal-transporting ATPase, similar to
human copper-transporting ATPases, ATP7A and ATP7B;
Region: P-type_ATPase_Cu-like; cd02094"
/db_xref="CDD:319783"
misc_feature order(3072..3074,3078..3080,4230..4232)
/gene="Atp7"
/note="putative Cu binding site [ion binding]; other site"
/db_xref="CDD:319783"
misc_feature order(3204..3212,3411..3413,3681..3689,3777..3779,
3897..3905,3963..3965,3972..3974,3981..3983,4038..4040,
4047..4049)
/gene="Atp7"
/note="putative ATP binding site [chemical binding]; other
site"
/db_xref="CDD:319783"
polyA_site 5644
/gene="Atp7"
/experiment="COORDINATES: polyA evidence [ECO:0006239]"
ORIGIN
tctgaaattgggtgtcggaatgtcaagtcacttgatattctcgcattatcggaataagacacgcgataatttctttttctctctttcctttcgcgacgcacatgcacgagtgtcacgaaatcccccttcaatctcgctcgacggaatcgctatctggagcatgcctttctctctcgtccgagtttgccccgagcagtcggcacaggtagcctgactcacctggtcctctgaatattcactctcggtttatatccgttaaacatgcaccattttcgtataacgtgccgcgatgagattgacgttttcgccgtgccttacgtattttgaatccttgatcattatacgatcagaaaatatatttttacgcagacgattatttttttacggctgtggatatagtattttcaccatgtggacaactgatttaaagagtgttaccgttgttcgttgcgataacgacaatgaatatggaaacttagcgtgactttattgtcgagttcggtgcttctttagactcgcggaagagtaatgacgattacttcagcaaattatcgctacctcctgctcacataaggttcctcttttgtagcgatgtatacgcgatatttactgtgatgattactgtgttacctacctcttaggattattgaactcttagttagtcgggaaaaatgtgaaatgagtgataacttgatgtgacaaaataagtatcacaattttactcgacgagcacaaaaaattgacgttgtatcgcgccgtttaatctataacacgagatggtgaagttcaggggtccgttggtgcatcgggttaaactggcgtatcgcaatctaaaggatatgacgatgacgaacgaggtggagcactcgatatcgtgtgaaaacataagattgcttgatggtgatggcgacgaccccgattctaagggtatcacgcacctggtgcgtgcactacgcacgtcggaagcgtggcagctcgcgcaggagaccagcacggttaaaatcggcattgagggtatgacctgtcagagttgcgcgaacaacatcgaaagggtgatcggcaatcggcccgacgtcgtcggtatcaaagtggttctggaggagaaagccggctacatcgagtacaaaacgcacgagatcacaccccgtgaattggcagaggcgatcgaggacatggggtacaccgccagcctgccatccaacctgacatccggcaacgcggagaacaaagcgaacaactcttcaatacctgccaccggcacttgcaacatacacgtagacggaatgacgtgtcagtcgtgcgttaagaacattaccgatgttctctccgaaaagcccggtataaagaacgtgaacgtcagcctggaggataaagaagccaaagtctcttacagtagcggtgatgtaacagtcgatcagatagtaatgtatatagaggacatgggcttcactgcgtatgtaaaaatagcgaaggacgagacatcgcaattggatgctgatatcaataaaaagaagaagaagacggagctggtgctgcaagcgaacggcgctggtgatgtcaaaaaacaattgtcaaagtgcttcttgcgtataactggtatgactcatgctcaccatgtcactggaatagagaaacattgtaaaaagctgtacggagtaaatagcatactggttgctttgatggccgccaaggcagaagttacatacaatcctgacaaaataaaagcggcggatattgcttcctgtatatcggaattgggttttcctacgactttaatcgaggaatttgggaccgaagaagtcgaagtcgagttaaaaatcatgggaatgacgtgcgcgtcttgcgtaaataaaatagaatcgaccgtgaagaagctacctggtgtacgatcggcaatggtcgctctagcgacgcagcggggcaagttcaagtacgacgtggaaatgactggtgtcagagatatcatcgaatgtatcaataatttgggtatttacacggccagtctgtttagcaatcgagataaggaaaatagggactacctggatcaaaaagaagagataagtaaatggcgaaggacgttcttcatatcgctgattttcggagttccgagtatggtatcgatgacatatttcatgctagttatgtcgttcggtaacaagacacacgaggaaatgtgttgcatagtacctggtctttcttgggaaaatctgttactcttcgtgttctccacgccggtgcagttttttggtggctggtatttctatgtgcaagcctataaagctttgagacatggtacaaccaacatggacgttttaatctcgatgactactacgatctcatatctttattctatcgccgttcttactgctgctatgataatgcaagagaacgtcagtccacagacgttcttcgacactccaccgatgctcttggtcttcatcagtttgggaagatggctcgagcacgtcgcgaagggaaagacgtccgaagctctctcaaaactgttatctttaaaagccacggatgcagtgttggtttcgctaggacaccacaaagaaatattaacggaacgctcgataagcgttgacatggtgcaacgtggcgacatactaaaagtggtcccaggtgccaaagtgcctgttgacggccgcgtattgttcggtgagtcgacctgcgacgagagtctgatcaccggtgagagtatgccagtgcaaaagaaggaaggctcgatggtgatcggcggttcgatcaatgagaacggatcgttggtgatcaccgccacgcacaccggcgagcacacgacgctggcgcagatcgttcgcttggtggaggaggcgcagacgaacaaggcacctatccagcaactggccgacaagatagccggctattttatacctctggtcatagtggtctccctagtgacgctagtgatttggatcatcatcggctacatgaatgtcgagcagctgcccatgtcgcacaacgaccagttcaataagcacggcttgagtcgggtggagatcatatttcaatacgcctttcgaagtgccctggcagtactcgcgattgcttgtccctgcgctcttggcctggccaccccgaccgcggtcatggtcggcacgggcgtaggtgcactaaacggcattctgatcaagggcgccgagccgctggagaacgcgcacaaagtcaaatgcgttgtcttcgacaagacgggaacgttgacgcacggtgctccaactgttaccaagatcgaattgttcgtggaagagatggtctgttcattggggacgttgctgacggtcgtcggcacggcagaaagaaacagcgaacatcctatcgcggcagcgatcgtacgctacgtgcaggacacaatcggatcgaaaactggacaatgtacgaattttgaagcagttcccggctgcggtttgaaatgtaaggtatctcatttggaaggtgcgctgggcgagtcgttgcaatccgaaaaccttataaactacatggatcagtcgcacaacgtgtcgactggaacgtacaatgtcaataacgtgcgcatcgacaagttgtcgatcgtcgagaagccggtaaccgatcgtcaagagatgcaaaagttaaatctacaattacttttggagcctctgcgtcgcgattcgaacatgattgacgagatatacgagatgtgcatcggtaatcgggaatggatgcgccggaatgcgatcaacgttccgcaggaagtcgacgagaggatggtcaacgaggagaacctaggacacaccacggttttggtcgcgataaacaatcttctggtcgccatgatcagtgtcgctgatacagtaaagcccgaggcacatctcgcagtctataccctgaagaaaatgggattggaggtgatcctcttgacgggcgataataagaaaaccgcggcttcgattgccaaacaggtcggcatcgacagagttttcgcggagatgttaccgtcccacaaggtggctaaaattcagcaactgcaaaaacagggtttgagagtcgccatggtgggagatggtgtcaatgacagtccggctctagctcaatcagatgtcggtatcgctatcgcgtctggcacagatgttgccgtggaggctgccgacgtggttttgatgcgcaacgatcttctggatgtaatcgcgtgtttagatctatcgaggaaaacggtccgcaggataagactgaatttcttattcgctagtgtctacaatcttctgggtattcccatagctgccggagtatttagctcctttggtttcttcctacagccgtggatgtcttccgccgccatggctttaagtagcgtatcggtagtaggaagttccttattattgaagctttatcgtaaaccgactaaagccacgttggaaactcccggatacctagaagttaggtttacccattccatagggcgatcgaacgatttgaatacgataatagtggatccattccatcgtggatcaaacgattcgctgaacagatataaatcagctatgaacagatcaacgtccacactgtccagaatatttggaaagtcaaaactcgaggtggagggccatctccttggcgaggaagcagatgaaactgatttagccgtggatttttcgaattatcgtaaaaacgcgaaaaactctatggacataacttccgtgtgaatcttgcatgagcactgtctgacaagcatttcaattctgttgactttgcagcaaatgaatcgaacgttaccaataattttaatattactttataatggagctaacagaagaaattgtataaaaatagtcaactaacaattctattataatataaagtgattttcacttgtcacattaaaaatgagctgcatcgcgaaagtaataccaataattcatacaagacttcgtgaatcgatttgagtgatattcatgtttaaacgaattgattgttatatttttataaactttatatattaagatgtataaataacaccgatctacctgactgtgaatgttttcataacaggatagcagtacttcctttttattgcaattaatagatacaagttttatcaatagttttttatcttattacatgcagatgtacttaattcaaatagtaaatggaaaaaattacgttttacacatttttaaaaatacatgcaatattttatatacgttttatatattataagacattacgtatgtccttttttattttatagattttaaaacaaacaaaatacaaaactattttatataaaatgtataaaactaaaaatcacgagattttagaaaaattttaaaaatctttaaagtttatcgcactcatttttaaattatacattttatttttcgactgaattgcaacgattgaaagtaaaagaaacaaaaatcatgatctgttaagatatttattataaattatacatgaaatatcagaaatcttaagcgctgcaattgtaacttgcattaaataaaaagagatgcgaataacggtgttacttttaaacgtatattaagaaatttttatattactatttatattttctttcaaatacttagtaagacaccacaatgtgcgtctaatatttaagatacaagacaatgcgtatgtatatatatacacaaaattttttagcata
//
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.
[Full Text]