Gene Details:

  • Gene ID: AT4G23700
  • Gene Symbol: ATCHX17, CHX17
  • Gene Name: cation/H+ exchanger 17, cation/H+ exchanger 17
  • Description: cation/H+ exchanger 17;(source:Araport11)
  • TAIR Accession: locus:2128484
  • Genome: Araport11_genome_release
  • Species: Arabidopsis thaliana

Transcripts:

Plant Ontology Annotations:

  • PO:0009005  — root — raíz (Spanish, exact), radices (exact, plural), radix (exact), 根 (Japanese, exact), aerial root (narrow), climbing root (narrow)
  • PO:0009025  — vascular leaf — foliage leaf (exact), hoja vascular (Spanish, exact), leaf, vascular (exact), vascular leaves (exact, plural), 維管束のある葉, または維管束植物の葉 (Japanese, exact), crozier (related), macrophyll (related), megaphyll (related), ascidia (narrow), ascidium (narrow), fiddlehead (narrow), frond (narrow), needle-like leaf (narrow), pitcher (narrow), pitcher blade (narrow), pitcher-blade (narrow), scale-like leaf (narrow), sterile frond (narrow), trophophyll (narrow)
  • PO:0009029  — stamen — estambre (Spanish, exact), 雄蕊 (Japanese, exact), Poaceae stamen (narrow), Zea stamen (narrow)
  • PO:0009031  — sepal — sépalo (Spanish, exact), がく片 (Japanese, exact)

Gene Ontology:

  • GO:0006623  — acts upstream of or within — protein targeting to vacuole
  • GO:0005634  — located in — nucleus
  • GO:1902600  — involved in — proton transmembrane transport
  • GO:0006885  — involved in — regulation of pH
  • GO:0005770  — located in — late endosome
  • GO:0015385  — enables — sodium:proton antiporter activity
  • GO:0006885  — acts upstream of or within — regulation of pH
  • GO:0012505  — is active in — endomembrane system
  • GO:0006812  — acts upstream of or within — monoatomic cation transport

Literature:

Sequence:

cDNA Sequence
  • >AT4G23700.1 CTTCTTACTCAAACACTTTATCCTCAACCTCAAGTCTCTCTTTAAAACCCAAAAATATTCCAACTTCACGAACATAAATCATCAACTACATTAAATCAATCGATTTAGATCGGATAATCATCTCCGTCCCGATATAATCTGCGTTTTCAGATATTAATCCATCTTTAAAGCATGGGAACAAACGGTACAACATGTCCAGGACCAATGAAAGCAACCTCTAATGGAGTCTTTCAAGGAGAGAATCCTCTGGAACACGCGTTGCCTCTTCTCATACTCCAGATCTGTATCGTTCTTCTTCTCACTCGTCTTCTTGCTTTTCTCCTCCGTCCTCTCCGGCAGCCACGTGTCATCGCCGAGATTGTCGGTGGAATATTACTTGGACCATCAGCACTTGGGAAAAGCACTAAGTTTATCAACACAGTTTTCCCACCAAAGAGTCTAACGGTTTTAGACACACTTGCAAACTTAGGACTCATCTTCTTCCTCTTCCTCGTTGGTCTCGAGCTCGATCCCAAATCTCTTAAGCGAACCGGAAAGAGAGCTCTCTCTATCGCTCTCGCCGGAATCACTCTTCCTTTCGTATTAGGCATTGGAACTTCTTTTGCTCTCCGCAGTTCCATAGCTGATGGAGCCAGCAAAGCTCCTTTCCTTGTCTTCATGGGTGTTGCTCTCTCCATCACAGCGTTTCCCGTCTTGGCCCGAATACTCGCTGAGATTAAGCTTCTAACCACTGATATCGGAAAGATTGCTTTGTCCGCTGCTGCGGTCAATGACGTGGCTGCTTGGATTCTCCTTGCTCTCGCGGTGGCTCTTTCTGGAGAGGGGAGCTCTCCGCTTACTTCTCTTTGGGTGTTTCTCTCGGGTTGCGGTTTTGTCTTGTTCTGTATCTTTGTTGTGCAACCAGGGATTAAGTTGATTGCTAAACGTTGCCCTGAAGGAGAACCGGTAAATGAACTTTACGTGTGTTGCACGTTAGGTATTGTTCTTGCAGCTAGCTTCGTCACAGACTTTATTGGGATTCATGCGCTGTTTGGTGCTTTTGTGATCGGGGTTATTTTCCCTAAAGAAGGCAATTTCGCGAATGCTTTAGTTGAGAAAGTTGAGGATCTCGTGTCAGGTCTTTTCTTGCCGCTCTACTTCGTCTCAAGTGGTTTAAAGACCAATGTTGCGACGATCCAAGGAGCTCAGTCTTGGGGACTCTTGGTTTTGGTTATATTTAATGCTTGTTTCGGTAAAATCATCGGTACAGTCCTAGTTTCCCTTTACTGCAAAGTTCCGCTTGACCAGTCTTTAGCGCTTGGTTTCTTGATGAACACGAAAGGTCTTGTTGAGCTCATCGTCCTCAACATTGGTAAAGACAGAGGGGTTCTGAATGATCAAATTTTCGCTATAATGGTTCTAATGGCGATATTCACCACATTCATGACGACTCCTCTAGTTCTGGCAGTGTACAAACCGGGTAAATCCTTAACCAAAGCTGATTATAAGAACCGAACGGTGGAGGAGACGAACCGTTCAAACAAACCGCTCTGCCTCATGTTCTGTTTCCAGAGCATAATGAACATCCCCACGATCGTCAACCTCATAGAAGCATCCCGAGGCATAAACCGTAAAGAAAATCTATCAGTCTACGCGATGCATCTTATGGAGCTTTCAGAGAGATCATCGGCTATACTCATGGCACACAAGGTCAGGAGAAACGGTCTTCCCTTCTGGAACAAAGACAAATCTGAGAACAATAGTTCTTCTTCCGACATGGTTGTGGTCGCATTCGAGGCTTTCCGAAGACTCAGCCGTGTCTCAGTGCGTCCCATGACAGCGATCTCACCGATGGCGACTATACATGAGGATATTTGCCAAAGCGCGGAACGCAAAAAAACCGCTATGGTGATTCTTCCGTTTCATAAGCACGTTAGGCTGGACAGAACATGGGAGACGACTAGGAATGACTACCGTTGGATTAACAAGAAGGTTATGGAGGAATCTCCATGTTCTGTTGCGATTTTGGTTGATCGTGGACTTGGTGGTACGACACGTGTCGCGTCTAGTGATTTCTCGTTGACTATAACAGTTTTGTTTTTTGGAGGGAATGATGATCGTGAGGCGTTAGCGTTTGCGGTGCGAATGGCTGAACATCCCGGGATAAGCTTAACCGTTGTTCGGTTTATCCCTAGCGATGAATTCAAACCGGAAAACGTGAGGATCGAGATAACCGAAGATCAGCTCTGTTCAGGGGCAACTAGATTGATTGATATTGAAGCTATAACCGAACTTAAAGCAAAGATTAAAGAAAAAGAAAGTTCTCGTTCTAATTCGGATTCTGAATCTCATATCATTTACGAAGAGAAAATCGTGAAATGTTACGAGGAAGTTATCGAAGTTATTAAAGAGTATTCTAAAAGCAACCTTTTCTTGGTGGGGAAGTCACCGGAAGGTTCTGTAGCGTCAGGGATAAACGTAAGAAGCGACACGCCTGAGCTTGGACCGATCGGGAATTTGTTAACGGAAAGCGAAAGTGTTTCGACGGTGGCATCAGTGTTGGTGGTGCAACAGTATATAGCAAGCCGTCCGGTCGGAATTTCGAAGAACGTCACGACTGAAGAGTCGCTGGTTGAGGATTCTGAGAGTCCTTAGTGAATTTTCTATTTGGGATTCCAAGACTCGAAAGGTCAAAAGATTGGCTTGTATAATAACATGTGTTTCATATTGTAAATAATAATTGCGAATAAATGATTTCTATATGCTAAGGTCTCCGTGACATTTTCTTCTTTTAATTTACATGACCAACTAAT
  • >AT4G23700.2 CTTCTTACTCAAACACTTTATCCTCAACCTCAAGTCTCTCTTTAAAACCCAAAAATATTCCAACTTCACGAACATAAATCATCAACTACATTAAATCAATCGATTTAGATCGGATAATCATCTCCGTCCCGATATAATCTGCGTTTTCAGATATTAATCCATCTTTAAAGCATGGGAACAAACGGTACAACATGTCCAGGACCAATGAAAGCAACCTCTAATGGAGTCTTTCAAGGAGAGAATCCTCTGGAACACGCGTTGCCTCTTCTCATACTCCAGATCTGTATCGTTCTTCTTCTCACTCGTCTTCTTGCTTTTCTCCTCCGTCCTCTCCGGCAGCCACGTGTCATCGCCGAGATTGTCGGTGGAATATTACTTGGACCATCAGCACTTGGGAAAAGCACTAAGTTTATCAACACAGTTTTCCCACCAAAGAGTCTAACGGTTTTAGACACACTTGCAAACTTAGGACTCATCTTCTTCCTCTTCCTCGTTGGTCTCGAGCTCGATCCCAAATCTCTTAAGCGAACCGGAAAGAGAGCTCTCTCTATCGCTCTCGCCGGAATCACTCTTCCTTTCGTATTAGGCATTGGAACTTCTTTTGCTCTCCGCAGTTCCATAGCTGATGGAGCCAGCAAAGCTCCTTTCCTTGTCTTCATGGGTGTTGCTCTCTCCATCACAGCGTTTCCCGTCTTGGCCCGAATACTCGCTGAGATTAAGCTTCTAACCACTGATATCGGAAAGATTGCTTTGTCCGCTGCTGCGGTCAATGACGTGGCTGCTTGGATTCTCCTTGCTCTCGCGGTGGCTCTTTCTGGAGAGGGGAGCTCTCCGCTTACTTCTCTTTGGGTGTTTCTCTCGGGTTGCGGTTTTGTCTTGTTCTGTATCTTTGTTGTGCAACCAGGGATTAAGTTGATTGCTAAACGTTGCCCTGAAGGAGAACCGGTAAATGAACTTTACGTGTGTTGCACGTTAGGTATTGTTCTTGCAGCTAGCTTCGTCACAGACTTTATTGGGATTCATGCGCTGTTTGGTGCTTTTGTGATCGGGGTTATTTTCCCTAAAGAAGGCAATTTCGCGAATGCTTTAGTTGAGAAAGTTGAGGATCTCGTGTCAGGTCTTTTCTTGCCGCTCTACTTCGTCTCAAGTGGTTTAAAGACCAATGTTGCGACGATCCAAGGAGCTCAGTCTTGGGGACTCTTGGTTTTGGTTATATTTAATGCTTGTTTCGGTAAAATCATCGGTACAGTCCTAGTTTCCCTTTACTGCAAAGTTCCGCTTGACCAGTCTTTAGCGCTTGGTTTCTTGATGAACACGAAAGGTCTTGTTGAGCTCATCGTCCTCAACATTGGTAAAGACAGAGGGGTTCTGAATGATCAAATTTTCGCTATAATGGTTCTAATGGCGATATTCACCACATTCATGACGACTCCTCTAGTTCTGGCAGTGTACAAACCGGGTAAATCCTTAACCAAAGCTGATTATAAGAACCGAACGGTGGAGGAGACGAACCGTTCAAACAAACCGCTCTGCCTCATGTTCTGTTTCCAGAGCATAATGAACATCCCCACGATCGTCAACCTCATAGAAGCATCCCGAGGCATAAACCGTAAAGAAAATCTATCAGTCTACGCGATGCATCTTATGGAGCTTTCAGAGAGATCATCGGCTATACTCATGGCACACAAGGTCAGGAGAAACGGTCTTCCCTTCTGGAACAAAGACAAATCTGAGAACAATAGTTCTTCTTCCGACATGGTTGTGGTCGCATTCGAGGCTTTCCGAAGACTCAGCCGTGTCTCAGTGCGTCCCATGACAGCGATCTCACCGATGGCGACTATACATGAGGATATTTGCCAAAGCGCGGAACGCAAAAAAACCGCTATGGTGATTCTTCCGTTTCATAAGCACGTTAGGCTGGACAGAACATGGGAGACGACTAGGAATGACTACCGTTGGATTAACAAGAAGGTTATGGAGGAATCTCCATGTTCTGTTGCGATTTTGGTTGATCGTGGACTTGGTGGTACGACACGTGTCGCGTCTAGTGATTTCTCGTTGACTATAACAGTTTTGTTTTTTGGAGGGAATGATGATCGTGAGGCGTTAGCGTTTGCGGTGCGAATGGCTGAACATCCCGGGATAAGCTTAACCGTTGTTCGGTTTATCCCTAGCGATGAATTCAAACCGGAAAACGTGAGGATCGAGATAACCGAAGATCAGCTCTGTTCAGGGGCAACTAGATTGATTGATATTGAAGCTATAACCGAACTTAAAGCAAAGATTAAAGAAAAAGAAAGTTCTCGTTCTAATTCGGATTCTGAATCTCATATCATTTACGAAGAGAAAATCGTGAAATGTTACGAGGAAGTTATCGAAGTTATTAAAGAGTATTCTAAAAGCAACCTTTTCTTGGTGGGGAAGTCACCGGAAGGTTCTGTAGCGTCAGGGATAAACGTAAGAAGCGACACGCCTGAGCTTGGACCGATCGGGAATTTGTTAACGGAAAGCGAAAGTGTTTCGACGGTGGCATCAGTGTTGGTGGTGCAACAGTATATAGCAAGCCGTCCGGTCGGAATTTCGAAGAACGTCACGACTGAAGAGTCGCTGGTTGAGGATTCTGAGAGTCCTTAGTGAATTTTCTATTTGGGATTCCAAGACTCGAAAGGTCAAAAGATTGGCTTGTATAATAACATGTGTTTCATATTGTAAATAATAATTGCGAATAAATGATTTCTATATGCTAAGGTCTCCGTGACATTTTCTTCTTTTAATTTACATGACCAACTAAT
CDS Sequence
Protein Sequence