Entry  
 
Name  
(RefSeq) ATPase 3, plasma membrane-type 
 
  KO  
 
Organism  
osa   Oryza sativa japonica (Japanese rice)
 
Pathway  
osa04075   Plant hormone signal transduction 
 
Brite  
KEGG Orthology (KO) [BR:osa00001 ] 
 09100 Metabolism 
  09102 Energy metabolism 
   00190 Oxidative phosphorylation 
    4350530 
 09130 Environmental Information Processing 
  09132 Signal transduction 
   04075 Plant hormone signal transduction 
    4350530 
Enzymes [BR:osa01000 ] 
 7. Translocases 
  7.1  Catalysing the translocation of protons 
   7.1.2  Linked to the hydrolysis of a nucleoside triphosphate 
    7.1.2.1  P-type H+-exporting transporter 
     4350530 
 BRITE hierarchy  
SSDB  
Ortholog Paralog Gene cluster GFIT  
Motif  
Motif  
Other DBs  
 
LinkDB  
All DBs  
Position  
11:join(19027835..19027981,19028509..19029621,19029698..19029826,19030088..19030310,19030408..19030554,19030655..19030896,19030984..19031013,19031109..19031190,19031296..19031456,19031526..19031690,19032068..19032191,19032438..19032646) 
Genome browser  
AA seq  
923 aa AA seq DB search  
MSREPAAAAEAEDVVARLGTDEATGLTEEEAARRLKLYGPNLVVAHHPQVGGKLLATLKC 
IVLLWGWDHSFTEYIKYEIGWESWEHLIFPCSREMLCVMFINFSSWAALAAALVSLALNS 
AGQTTYELIVIVSLLVGSLCACCVAKLLANRAKAPLEAKAFARRTKVLRDGIWKHEDATN 
LVPGDIIYLKCGDIVPANAFVLNMAQIDTKTIRHERSVNYVMGSLIYYGWAVSCGEGTAV 
VTVTGNNIPMSTLKQLYPKRFSRPGQLRKGVMAAATFCFCLVLVGITSEALVKFFFHQSI 
GTLHSGHFMPLIGLIPMSIPAVLYLALALDSQRLSKLGVASRGTFALEDLASMDAMLFNM 
TGTLTCNKPYFDKDKIEVLTEGIDKDHAVLLAARASKAHNELYKEPIDAAILGLMDDPEQ 
ARVGINVIEHRSRMFVAMTLMYMTTYIDENGSKCSVLKGDPALMLRDCSCSEEVREHIRK 
RIDKLGLDGYQCIAVGRIVNSRLDIIILLPFIDDLRSDSAEAVDNLTDMGLSVIVLTESP 
MTITKHVCGRLGKLGLNVLHADSMRELVSSKNELFLNINGISDLFVEYNRYVISNLRTYF 
GRRSAMVGYEFSDVDSIRESDIGIAVADATDSTKSESDIVLTEHALLSVSSAVQASREIC 
QIMKGCMVYAVSSTVHAFAVRLILLLWRLELPCFPMLVIAACNYCTSTAMLFERVKPSQS 
PDSLKANKIIATGAAFGSYIALSTVVFFIMTTRTDFISHIIKARLLVGHDEEIKSALFLQ 
MSIVNHAIGLFAHSRDGHCSGPIVTISSVLSQLVATVIAVYGDVNSPLPKGIGWGWAGFI 
WLYNFVLLLSLMLICDLCNLAKFNIFGITCRRLFTGWTEWMERCRRLLNRGKTWMEMLTL 
TAISGLILVWSIYAYHVMKVPQQ  
NT seq  
2772 nt NT seq   +upstream nt  +downstream nt 
atgtcacgcgagcctgcggcggcggcggaggcggaggacgtcgtggcccgtctcggcacc 
gacgaggcgactgggctgacggaggaggaggcggcgcgccgcctcaagctgtacgggcct 
aacctcgtggtcgcccatcacccccaggtgggtggcaagcttcttgctacactaaagtgc 
atcgtcctgctctggggatgggatcactccttcaccgagtacattaaatacgagattgga 
tgggagtcatgggagcatcttatcttcccctgctccagggagatgttatgtgtcatgttc 
atcaatttctcgtcatgggcggcattggcggctgcacttgtgtcccttgcccttaactca 
gctggtcagacaacctatgaactgatcgttatcgtctccttacttgtgggaagcctgtgt 
gcatgctgtgttgccaagctccttgccaatcgtgctaaggcaccgctggaagctaaagct 
tttgcgcgaaggaccaaggttctgagggatggaatatggaaacatgaggatgcgaccaat 
cttgtccctggggatatcatatatctcaagtgtggtgatattgtgccagccaatgctttt 
gtcctcaacatggcacagatcgacaccaaaaccatccgtcatgaaaggagtgttaactat 
gtgatgggctcccttatatactatggctgggctgtctcctgtggcgaagggactgctgtt 
gttactgtgacaggcaataacatccccatgagcactctgaaacagctttatccaaaacga 
ttctctcggcctgggcagcttaggaagggtgtcatggctgctgccactttttgcttctgc 
ttagtacttgttggcatcacaagtgaggctcttgttaaattctttttccatcaaagcata 
ggcacgctgcacagtggccactttatgccacttattggtctaataccaatgtcgattcct 
gctgtgctctacctggcattggcattggactctcagaggctttccaaattgggggttgcc 
agccggggaacttttgctcttgaagacttggctagcatggatgctatgctcttcaacatg 
actggcactttgacatgcaacaagccctattttgacaaggacaagattgaagtgcttaca 
gaaggtattgataaagatcatgctgtcctgttggctgcgcgggcttccaaagcacacaat 
gaactgtataaagaaccgattgatgcagccattctaggccttatggatgatccagaacag 
gcacgagttggcattaatgttatagagcaccgctcccgtatgtttgttgcaatgacattg 
atgtacatgactacttacatcgatgaaaatggctccaagtgttctgtgctcaaaggtgac 
cctgcattgatgcttcgtgactgcagttgtagcgaagaagtcagagagcatatacgcaaa 
cgtattgataagctcggtcttgatggatatcaatgtattgctgttggacgtattgttaac 
tctcggttggacatcattattcttctacctttcatagatgatctcagaagcgatagtgca 
gaagctgttgataatcttactgatatgggtctgagtgtaatagtacttacagaaagccca 
atgacaattacaaagcacgtatgtggaagacttggaaaactgggcttaaatgtgttacat 
gctgactctatgcgggagttggtaagcagcaaaaatgagcttttcttgaatatcaatggg 
atttctgatctctttgtagaatataaccgttatgttatatcaaatctgagaacttatttt 
ggtcgtcgtagtgcaatggttggatatgaattttcggatgttgattctatccgtgaaagc 
gatattggaatcgcagttgccgatgccactgatagcaccaaaagtgaatctgatattgtt 
ttgactgagcatgccttgctgtctgtttcttctgctgttcaagccagtagggaaatttgt 
cagatcatgaaaggatgcatggtttatgctgtttcatcaactgtccatgcttttgctgtc 
cgtcttattttactcctatggagactcgagctaccctgtttcccgatgctggtgattgct 
gcttgcaactactgcacatcaactgcaatgttatttgaaagggtgaaaccatcccagtca 
ccagatagtttgaaagcaaacaagattatcgcaactggtgctgcttttggaagctatatt 
gccctgagtacagtcgtttttttcataatgactactaggactgacttcatatctcacata 
atcaaagctagattgcttgttggccatgatgaggagattaaatctgccttattccttcaa 
atgagcattgttaaccatgctattggacttttcgcacattcacgcgatggccactgctct 
gggcctattgttacaatttcttctgttctatctcaactggtggcaaccgtcattgctgtt 
tatggtgacgtgaactctcctctaccaaagggcattggctggggctgggcaggatttatc 
tggctctacaactttgtcttgcttttgagcctcatgttgatctgtgacctgtgtaacctt 
gcaaagttcaacatatttgggataacctgcaggaggctgttcactggttggaccgagtgg 
atggagaggtgcaggaggctgctcaacaggggtaaaacgtggatggagatgttgacctta 
actgctatctcaggcttgattcttgtctggtcgatatatgcatatcatgtcatgaaggtc 
ccgcagcagtag