Details from NCBI annotation

Gene Symbol Eea1
Gene Name early endosome antigen 1, transcript variant X3
Entrez Gene ID 101720751

Database interlinks

Part of NW_004624750.1 (Scaffold)

For more information consult the page for NW_004624750.1 (Scaffold)

Potential Gene Matches

The following genes have been identified as possible homologs of the naked mole-rat gene and compared to it.

EEA1 ENSCPOG00000014506 (Guinea pig)

Gene Details

early endosome antigen 1

External Links

Gene Match (Ensembl Protein ID: ENSCPOP00000013072, Guinea pig)

Protein Percentage 90.69%
CDS Percentage 90.95%
Ka/Ks Ratio 0.20522 (Ka = 0.0521, Ks = 0.2539)

EEA1 ENSG00000102189 (Human)

Gene Details

early endosome antigen 1

External Links

Gene Match (Ensembl Protein ID: ENSP00000317955, Human)

Protein Percentage 91.68%
CDS Percentage 90.66%
Ka/Ks Ratio 0.12066 (Ka = 0.0413, Ks = 0.3419)

Eea1 ENSMUSG00000036499 (Mouse)

Gene Details

early endosome antigen 1

External Links

Gene Match (Ensembl Protein ID: ENSMUSP00000061493, Mouse)

Protein Percentage 85.95%
CDS Percentage 83.97%
Ka/Ks Ratio 0.11225 (Ka = 0.0827, Ks = 0.7365)

Eea1 ENSRNOG00000021681 (Rat)

Gene Details

early endosome antigen 1 (Eea1), mRNA

External Links

Gene Match (Ensembl Protein ID: ENSRNOP00000029575, Rat)

Protein Percentage 85.73%
CDS Percentage 84.18%
Ka/Ks Ratio 0.12203 (Ka = 0.0859, Ks = 0.7041)

Genome Location

Sequence Coding sequence

Length: 4317 bp    Location: 13848974..13966873   Strand: +
>XM_004844973.1
ATGCTGAGGAGGATCTTGCAGCGGACTCCTGGGAGAGTTGGCTCTCAAGGTTCTGATTTAGATTCTTCCACAACTCCTATAAACACAGTGGATGTCAATAATGAAAGCTCTTCAGAGGGTTTCATCTGTCCATTATGTATGAAAAGATGTATAACTGCTATTGATTTGTCGGAGCATTACCACAAAGTACACGCTGAAAATGAAACAAGAGGACAGGACCTTCTTAATGACTCCAGTGTTACTGGCTTCATATGTCCCCAGTGCATGAAATCTCTTGGATCTGCTGATGAGCTTTTCAAACACTACCAGGCAGTTCATGATGCTGGCAATGATTCAAAGCATGGAGAGGCTGAGCTTGCTCTGCAGAGAGATGACATAACATTGCTCAGACAAGAGGTCCAGGACCTACAGGCTTCACTTAAGGAAGAAAAATGGTACTCAGAAGAATTAAAGAAAGAATTAGAAAAATATCAAGGGCTGCAGCAACAAGAGGCTAAACCTGATGGATTGGTGGCTGATTCATCATCAGCAGAACTACAGTCTTTGGAACAGCAGTTAGAGGAAGCTCAGACAGAAAATTTTAATATTAAGCAAATGAAAGATTTATTTGAACAGAAAGCAGCCCAACTTGCTACTGAAATTGCAGATATAAAGTCAAAATATGATGAAGAAAGGAGTCTTCGGGAAGCTGCTGAACAAAAAGTGACACATTTGACAGATGAATTAAACAAAGGAGCAACTGTAATTCAAGATCTGAAGACTGAACTGCTTCAAAGACCTGGTATAGAAGATGTTGCTGTGCTAAAGAAAGAACTGGTCCAAGTTCAAACATTAATGGATAATATGACTTTGGAGCGTGAGAGAGAATCTGAAAAACTCAAAGATGAGTGCAAAGAGTTACAAGCCAAACATGCTAACTCAGAGGCCACAATAAGCCAGCTAAGGAGTGAACTTGCCAAAGGTCCTCAGGAAGTTGCTGTATATGTGCAGGAACTACAAAAACTTAAAAGTTCAGTTAATGAATTAACACACAACAATCAGAACTTGACAGAAAAATTGCTGAAGAAAGAACTGGATTATACCCAGTTAGAGGAAAAGCATAATGAAGAGTCTGTGAGTAAGAAGAATATGCAAGCAAGCCTTCATCAAAAAGACCTCGATTGTCAGCAGCTGCAGTCAAGGTTGTCTGCATCGGAAACCTCTCTGCAGAGGATACAGGCAGAACTAAGTGAAAAAGGAGAGGCTGCCCAAAAGCTCAAAGAAGAGTTATCTGAAGTGGAGACCAAACACCAGCATCTAAAGGCAGAGTTTAAGCAGCTGCAACAACAGAGAGAAGAAAAGGAGCAGCATGGGTTACAGCTCCAAAGTGAGATCAATCAATTACATAGCAAACTTCTGGAGACTGAGCGCCAGCTAGGGGAAGCTCATGGTCGGCTTAAGGAGCAGAGACAGCTTTCAAGTGAAAAATTGATGGATAAAGAACAGCAAGTAGCTGACTTACAACTCAAACTTTCTCGTTTGGAAGAACAGTTGAAGGAAAAAGTAACAAATTCCACAGAGTTGCAGCATCAGTTAGATAAAATAAAACAACAGCATCAAGAACAACAAGCTCTTCAACAAAGTACTACAGCAAAACTACGAGAAGCTCAGAATGATTTGGAACAAGTTCTACGTCAAATTGGTGATAAGGACCAAAAGATCCAGAACCTTGAAGCCTTATTACAGAAGAGTAAAGAAAACATTTCATTACTAGAAAAAGAAAGAGAGGATCTTTATGCAAAAATCCAGGCTGGTGAAGGAGAGACTGCTGTTCTTAACCAGTTGCAAGAAAAAAATCATATGCTACAGGAGCAAGTAACTCAGTTAACAGAGAAGCTGAAGAATCAGTCAGAAAGCCATAAACAAGCCCAGGAGAATTTACATGACCAGGTACAAGAGCAGAAGGCGCATCTAAGAGCTGCACAAGACCGTGTTCTTTCCCTTGAAACCAGTGTCAGTGAATTAAATAGTCAGTTAAATGAAAGCAAGGAGAAGGTCTCCCAGCTTGACATCCAGATTAAAGCCAAAACTGAATTATTGCTGTCAGCCGAAGCAGCAAAAACTGCTCAAAGAGCAGATCTTCAGAATCATTTGGACACAGCTCAAAATGCATTACAAGATAAACAGCAGGAGTTAAATAAGGTCATTACGCAGTTGGATCAGGTCACTGCAAAGTTACAAGACAAGCAGGAACATTGCAGTCAGATGGAAAGTCATCTTAAAGAATATAAAGAGAAACACCTTTCTTTAGAACAAAAAACTGAAGAGCTAGAAGGTCAAATTAAGAAACTAGAAGCTGAAACTCTTGAAGTTAAAGCAAGCAAGGAACAAGCTTTGCAGGACCTTCAACAGCAAAGACAGCTGAGCACAGATTTGGAGCTGAAGACCACAGAATTGAGTAAACAACTTGAAATGGAGAAAGAAACAGTATCCAGCACAAAATTAGATTTACTGAAAAAATCTGAAACCATTGAAACTATTAAGCAAATGCTTGCCAAGGAAGAGGAGGAAAATGCTGTCCTGAAACAAGAAATTGAAAAGTTAAGTCAAGATATAAAGATGCAGCAAGAGGAATTGAATAACAGAATTCAAACAGCACAAACCGAACTAAAGGAAGTAAAAACGGAGAAAGAAATGCTAATGACAGAACTTTCTACAGCAAAAGACAAATTGTCAAAAGTATCTGATTCCTTAAAAAATTCCAAACGTGAATTTGAAAAGGAGAACCAGAAAGGAAAAGCTGCTATATTAGATTTGGAAAAAACTTGCAAAGAATTAAAGCATCAACTTCAAATACAGACAGAAAGCACACAAAAGGAACAGAATGAACTGAAGAAATCACTTGAAAAAGAGAGGGAGGCTTCTCATCAATTGACATTGGAACTCAATTCAATTAAGGAACAAGTCATAGAGGCCCAAAGTACTTTAAAACAAAAGGAAAAAGAACAGCAACAACTTCAGGGGAACATAAAAGAGCTAAAGCAATTGATTGAACAGAAGAAAAAGCAAATAGAAGCACACCAAGGAGAAGTCAAAATTGCTATTTCACAGAAGACAGAGCTTGAGAATAAATTACAGCAACAGTCAGCGCAGGCAGCCCAGGAACTTGCAGCAGAGAAAGAAAAGATATCAGGATTACAAAATACCTATGAAAAATGCCAGGAAAATCTAAAACAGCTTCAATCTGACTTCTATGGGAAGGAGTCTGAACTCCTAGCCACGAGGCAAGATCTTAAGTCTGTAGAAGAGAAGCTCTCTCTAGCACAGGAAGACTTGATTTCAAACAGAAATCAAATTGGAAGCCAGAATAAACTGATCCAAGAACTAAAGACTGCCAAAGCTACTTTGGAGCAGGATTCAGCAAAGAAAGAGCAGCAGTTGAAGGAACAGAGTAAAACACTACAAGATATGCAAAAAGAAAAGTCAATGAAAGAAAAAGAACTAGTGAATGAAAAGTCTAAATTGGCAGAGATAGAGGAAATTAAGTGTAGACAAGAAAAACAAATCACTAAATTAAGTGAAGAACTGAAGTCCCACAAACAAGAAAGTATAAAGAAATTAGAACTTCAAGGAAAAGTAGATTCCCTGAAGGCGGCTCTGGAGCAGGAGAAGAGAAACCAGCAGATGCTGAAAGAGCAGATGAAAAAGGAAGAAGATGAACTAAAGAAAGAATTTAGTGAGAAGGAAGCTAAACTGCATTCCGAAATAAAAGACAAGGAAGTAGGAATGAAGAAACATGAAGAAAATGAGGCTAAGCTTACCATGCAGATTACAGCACTGAATGAAAATTTAGGCACTGTAAAGAAGGAGTGGCAGTCAAGTCAACGGAGAGTTAGTGAGCTTGAGAAACAAACGGATGACTTACGGGGTGAAATTGCAGTGTTAGAAGCCACGGTTCAGAATAATCAAGATGAAAGGAGAGCACTACTAGAAAGATGCCTTAAAGGAGAAGGAGAAATAGAAAAGTTTCAGACCAAAGTACTAGAGTTGCAAAGAAAGCTGGATAATACGACCGCAGCAGTGCAGGAGCTAGGCAGGGAAAACCAGTCTCTTCAGATCAAACATACGCAAGCACTGAATAGAAAATGGGCTGAGGACAATGAAGTACAAAACTGTATGGCCTGCGGGAAAGGCTTTTCAGTCACAGTGAGACGGCATCATTGCCGACAGTGTGGAAATATCTTCTGTGCTGAGTGTTCAGCCAAGAACGCCTTAACGCCTTCCTCCAAGAAACCCGTCCGCGTCTGTGATGCATGCTTCAATGACTTGCAAGGGTAA

Related Sequences

XP_004845030.1 Protein

Eea1 PREDICTED: early endosome antigen 1 isoform X3 [Heterocephalus glaber]

Length: 1438 aa      View alignments
>XP_004845030.1
MLRRILQRTPGRVGSQGSDLDSSTTPINTVDVNNESSSEGFICPLCMKRCITAIDLSEHYHKVHAENETRGQDLLNDSSVTGFICPQCMKSLGSADELFKHYQAVHDAGNDSKHGEAELALQRDDITLLRQEVQDLQASLKEEKWYSEELKKELEKYQGLQQQEAKPDGLVADSSSAELQSLEQQLEEAQTENFNIKQMKDLFEQKAAQLATEIADIKSKYDEERSLREAAEQKVTHLTDELNKGATVIQDLKTELLQRPGIEDVAVLKKELVQVQTLMDNMTLERERESEKLKDECKELQAKHANSEATISQLRSELAKGPQEVAVYVQELQKLKSSVNELTHNNQNLTEKLLKKELDYTQLEEKHNEESVSKKNMQASLHQKDLDCQQLQSRLSASETSLQRIQAELSEKGEAAQKLKEELSEVETKHQHLKAEFKQLQQQREEKEQHGLQLQSEINQLHSKLLETERQLGEAHGRLKEQRQLSSEKLMDKEQQVADLQLKLSRLEEQLKEKVTNSTELQHQLDKIKQQHQEQQALQQSTTAKLREAQNDLEQVLRQIGDKDQKIQNLEALLQKSKENISLLEKEREDLYAKIQAGEGETAVLNQLQEKNHMLQEQVTQLTEKLKNQSESHKQAQENLHDQVQEQKAHLRAAQDRVLSLETSVSELNSQLNESKEKVSQLDIQIKAKTELLLSAEAAKTAQRADLQNHLDTAQNALQDKQQELNKVITQLDQVTAKLQDKQEHCSQMESHLKEYKEKHLSLEQKTEELEGQIKKLEAETLEVKASKEQALQDLQQQRQLSTDLELKTTELSKQLEMEKETVSSTKLDLLKKSETIETIKQMLAKEEEENAVLKQEIEKLSQDIKMQQEELNNRIQTAQTELKEVKTEKEMLMTELSTAKDKLSKVSDSLKNSKREFEKENQKGKAAILDLEKTCKELKHQLQIQTESTQKEQNELKKSLEKEREASHQLTLELNSIKEQVIEAQSTLKQKEKEQQQLQGNIKELKQLIEQKKKQIEAHQGEVKIAISQKTELENKLQQQSAQAAQELAAEKEKISGLQNTYEKCQENLKQLQSDFYGKESELLATRQDLKSVEEKLSLAQEDLISNRNQIGSQNKLIQELKTAKATLEQDSAKKEQQLKEQSKTLQDMQKEKSMKEKELVNEKSKLAEIEEIKCRQEKQITKLSEELKSHKQESIKKLELQGKVDSLKAALEQEKRNQQMLKEQMKKEEDELKKEFSEKEAKLHSEIKDKEVGMKKHEENEAKLTMQITALNENLGTVKKEWQSSQRRVSELEKQTDDLRGEIAVLEATVQNNQDERRALLERCLKGEGEIEKFQTKVLELQRKLDNTTAAVQELGRENQSLQIKHTQALNRKWAEDNEVQNCMACGKGFSVTVRRHHCRQCGNIFCAECSAKNALTPSSKKPVRVCDACFNDLQG