Details from NCBI annotation

Gene Symbol Adamts3
Gene Name ADAM metallopeptidase with thrombospondin type 1 motif, 3
Entrez Gene ID 101701511

Database interlinks

Part of NW_004624890.1 (Scaffold)

For more information consult the page for NW_004624890.1 (Scaffold)

Potential Gene Matches

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

ADAMTS3 ENSCPOG00000006487 (Guinea pig)

Gene Details

ADAM metallopeptidase with thrombospondin type 1 motif, 3

External Links

Gene Match (Ensembl Protein ID: ENSCPOP00000019122, Guinea pig)

Protein Percentage 86.34%
CDS Percentage 84.49%
Ka/Ks Ratio 0.13708 (Ka = 0.0845, Ks = 0.6164)

ADAMTS3 ENSG00000156140 (Human)

Gene Details

ADAM metallopeptidase with thrombospondin type 1 motif, 3

External Links

Gene Match (Ensembl Protein ID: ENSP00000286657, Human)

Protein Percentage 87.36%
CDS Percentage 85.31%
Ka/Ks Ratio 0.12422 (Ka = 0.0697, Ks = 0.5613)

Adamts3 ENSMUSG00000043635 (Mouse)

Gene Details

a disintegrin-like and metallopeptidase (reprolysin type) with thrombospondin type 1 motif, 3

External Links

Gene Match (Ensembl Protein ID: ENSMUSP00000132219, Mouse)

Protein Percentage 83.54%
CDS Percentage 80.92%
Ka/Ks Ratio 0.1161 (Ka = 0.0979, Ks = 0.8431)

Adamts3 ENSRNOG00000027463 (Rat)

Gene Details

ADAM metallopeptidase with thrombospondin type 1, motif 3 (Adamts3), mRNA

External Links

Gene Match (Ensembl Protein ID: ENSRNOP00000057209, Rat)

Protein Percentage 91.4%
CDS Percentage 85.27%
Ka/Ks Ratio 0.06366 (Ka = 0.0484, Ks = 0.7609)

Genome Location

Sequence Coding sequence

Length: 3183 bp    Location: 3928770..3738727   Strand: -
>XM_004871757.1
ATGGTCAGTCTGGACATTTGCATTGGCAGTGGAGCAGAACCGCCTCCCAGCCAACCTACAACCACCCTGAGCCTCTATGCTGGAATGATAAAAAGTGATAATGAAGAGTATTTCATTGAACCCTTGGAAAGAGGTAAGCAGATGGAGGAAGAAAGAGGAAGGATTCACGTTGTCTACAAGAGATCAGCCATTGAGCAAGCACCCATGGACATGTCCAGAGACATCCACTTCCAAGAGCCCCATCTAGGAGGCCTGGACCTGGGTACAGTTTACAGCAACGTTGACCAGCAGCTGAATGAAACTCTGAGACACCGCAGACATGTGGGAGAAGACGACTACAACATCGAAGTGCTGCTGGGAGTGGATGACTCTGTGGTCCGGTTCCATGGCAAAGAGCACGTCCAAAACTACCTCCTCACCCTGATGAACATCGTGAATGAAATTTACCATGATGAGTCCCTCGGAGTGCATATAAATGTGGTCCTGGTCCGAATGATAATGCTGGGTTATGCAAAGTCCATCAGCCTCATAGAAAGGGGAAACCCATCCCGGAGCTTGGAGAATGTCTGTCGCTGGGCTTGCCAACAACAAAAATCTGATCCTAACCACTCTGAACATCATGATCATGCAATTTTCTTAACCAGACAAGACTTTGGACCTGCTGGAATGCAAGGATATGCTCCAGTCACGGGCATGTGTCATCCAGTGAGAAGCTGCACCCTGAATCACGAGGATGGTTTTTCATCTGCTTTTGTAGTAGCCCATGAAACTGGCCATGTGCTGGGCATGGAGCACGACGGGCAAGGCAACCGGTGTGGTGAGGAGACTGCGATGGGCAGTGTCATGGCGCCCTTGGTGCAAGCCGCCTTCCACCGCTACCACTGGTCCCACTGCAGTGGCCAGGAGCTGAGGAGATACATCCATTCCTATGACTGTCTGCTTGATGACCCTTTTGAACATGATTGGCCTAAACTCCCAGAACTTCCTGGAATAAATTATTCTATGGATGAGCAATGTCGTTTTGATTTTGGTGTTGGTTACAAAATGTGCACTGCGTTCCGCACCTTTGACCCATGCAAACAGCTGTGGTGCAGTCATCCTGACAACCCCTACTTCTGTAAGACTAAGAAGGGGCCCCCTCTCGATGGCACTGAATGTGCTCCTGGGAAATGGTGCTACAAAGGACACTGCATGTGGAAGAATGCTAACCAGCAGAAACAGGATGGCAACTGGGGCTCCTGGACCAAGTTTGGCTCCTGCTCACGGACGTGTGGAACTGGGGTCCGGTTCAGGACGCGCCAGTGCGACAGCCCGACGCCCATCAATGGTGGTCAGGACTGTACAGGCGTTAACTTTGAGTACCAGCTCTGTAATACGGAAGAGTGCCAGAAACACTTCGAGGACTTCAGAGCACAGCAGTGCCAGCAGCGGAACTCTCACTTTGAGTTCCAGGGCACCAAACATCACTGGTTGCCGCATGAGCACCCTGACCCCAAGAAGAGATGCCACCTGTACTGCCAGTCCCGGGAGACGGGGCACGCGGCGTACATGAAGCAGCTGGTGCACGATGGTACCCGCTGCTCCTACAAGGACCCCTACAGCATCTGCGTGCGCGGCGAGTGCGTGAAAGTGGGCTGTGATAAAGAACTTGGCTCCAACAAGGTTGAGGACAAATGTGGTGTCTGTGGAGGAGACAACTCTCACTGTCGAACTGTAAAGGGGATATTTACCAGGACTCCCAGGAAGCTTGGGTACCTTAAGATGTTTGATATCCCCCCTGGGGCTAGACATGTGTTAATCCAAGAAGACGAGGCCTCTCCTCACATTCTTGCTATCAAGAACCAGGCTACAGGCCACTACATTTTAAATGGCAAAAGGGAGGAAGCCAAGTCACGGACCTTCGTAGATCTTGGTGTGGAGTGGGATTACAGCATCGAAGACGACATTGAGACGCTTCACACTGATGGGCCCTTGCACGATCCTGTTATCATTCTGATTATACCTCAGGAAAATGACACCCGCTCCAGCCTGACATACAAGTACATCATCCATGAGGACTCTGTGCTCACCATCAACAGCAACAACGTCATCCAGGATGAGCTAGACACATTCGAGTGGGCACTGAAGAGCTGGTCTCAGTGCTCCAAGCCCTGTGGTGGAGGTTTCCAGTACACTAAATATGGATGCCGTAGGAAAAGTGATAATAAAATGGTTCATCGTAGCTTCTGTGAGGCCAGTAAGAAGCCGAAACCTATTAGACGAATGTGCAATATTCAAGAGTGTACACACCCATTCTGGGTGGCAGAAGACTGGGAGCACTGCACCAAAACCTGCGGCACTTCCGGCTACCAACTCCGCACCGTGCGCTGCCTTCAGCCACTCCAGGACGGCACCAACCACTCGGTGAACAGCAAGAACTGTGTGGGAGATCGTCCCGAGAGCCGCCGGCCCTGCAGCAGGGTGCCCTGCCCAGCGCAGTGGAAAGCAGGGCCCTGGAACGAGTGTTCTGTGACATGTGGCGAAGGCACTGAGGTGAGGCAGGTCCTCTGCAGGGCTGGAGACCGCTGTGATGGAGAAAAGCCTGCGTCCATGAGAGCCTGTCAGCTACCACCCTGCAATGATGAGCCATGTTTAGGGGACAAGTCCATATTCTGTCAGATGGAGGTGCTGGCCCGGTACTGCTCCATACCAGGTTACAACAAATTATGCTGTGAGTCATGCAGCAAGCGAAGTACCCTGTCACCACCATACCTGCTGGAAACTGCTGAGCCTCATGACGATGCCATCTTTAGCCCCGATAACCTCCCCAGTACTCTAGTGATGCCCACAGCTTTGGGTCCTTACTATCCAGAGATGCCTGCTGAGAAAAAACCTGTAGGTAGCATTTCTTCAGGCGGAAGCCCAAATGCACATGCTTCTTTCAGGCCAAACAACAAGCCTGATGGTGCTAACTTTCCCCAGAGCGGGGCTTGGCAGGCCAGAAGTCAGACACTAAGCCTGCTCTCTGTGCCATCTTCCTCATCCACCAAGGGTGACCACCTCCACTCAGACTCAGAGGTAGCTGCTGCTCCCTTCCTTGAAGTCAATGATTCCATAGGTGCTTCTCAGACAAGAACCTCAAAGAAAGATGGAAAGATTATTCATAAGAGACATCCAATAAGCTCGCCCACCTTAGAAAGATGA

Related Sequences

XP_004871814.1 Protein

Adamts3 PREDICTED: A disintegrin and metalloproteinase with thrombospondin motifs 3 [Heterocephalus glaber]

Length: 1060 aa      View alignments
>XP_004871814.1
MVSLDICIGSGAEPPPSQPTTTLSLYAGMIKSDNEEYFIEPLERGKQMEEERGRIHVVYKRSAIEQAPMDMSRDIHFQEPHLGGLDLGTVYSNVDQQLNETLRHRRHVGEDDYNIEVLLGVDDSVVRFHGKEHVQNYLLTLMNIVNEIYHDESLGVHINVVLVRMIMLGYAKSISLIERGNPSRSLENVCRWACQQQKSDPNHSEHHDHAIFLTRQDFGPAGMQGYAPVTGMCHPVRSCTLNHEDGFSSAFVVAHETGHVLGMEHDGQGNRCGEETAMGSVMAPLVQAAFHRYHWSHCSGQELRRYIHSYDCLLDDPFEHDWPKLPELPGINYSMDEQCRFDFGVGYKMCTAFRTFDPCKQLWCSHPDNPYFCKTKKGPPLDGTECAPGKWCYKGHCMWKNANQQKQDGNWGSWTKFGSCSRTCGTGVRFRTRQCDSPTPINGGQDCTGVNFEYQLCNTEECQKHFEDFRAQQCQQRNSHFEFQGTKHHWLPHEHPDPKKRCHLYCQSRETGHAAYMKQLVHDGTRCSYKDPYSICVRGECVKVGCDKELGSNKVEDKCGVCGGDNSHCRTVKGIFTRTPRKLGYLKMFDIPPGARHVLIQEDEASPHILAIKNQATGHYILNGKREEAKSRTFVDLGVEWDYSIEDDIETLHTDGPLHDPVIILIIPQENDTRSSLTYKYIIHEDSVLTINSNNVIQDELDTFEWALKSWSQCSKPCGGGFQYTKYGCRRKSDNKMVHRSFCEASKKPKPIRRMCNIQECTHPFWVAEDWEHCTKTCGTSGYQLRTVRCLQPLQDGTNHSVNSKNCVGDRPESRRPCSRVPCPAQWKAGPWNECSVTCGEGTEVRQVLCRAGDRCDGEKPASMRACQLPPCNDEPCLGDKSIFCQMEVLARYCSIPGYNKLCCESCSKRSTLSPPYLLETAEPHDDAIFSPDNLPSTLVMPTALGPYYPEMPAEKKPVGSISSGGSPNAHASFRPNNKPDGANFPQSGAWQARSQTLSLLSVPSSSSTKGDHLHSDSEVAAAPFLEVNDSIGASQTRTSKKDGKIIHKRHPISSPTLER