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ONTOLOGY REPORT - ANNOTATIONS


Term:mitochondrial ATP synthesis coupled proton transport
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Accession:GO:0042776 term browser browse the term
Definition:The transport of protons across a mitochondrial membrane to generate an electrochemical gradient (proton-motive force) that powers ATP synthesis.
Synonyms:broad_synonym: mitochondrial proton transport


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mitochondrial ATP synthesis coupled proton transport term browser
Symbol Object Name JBrowse Chr Start Stop Reference
G AC096404.1 RGD:13792537
G Atp5f1a ATP synthase F1 subunit alpha JBrowse link 18 74,156,553 74,164,490 RGD:1624291
G Atp5f1b ATP synthase F1 subunit beta JBrowse link 7 2,504,708 2,511,748 RGD:13792537
RGD:1624291
RGD:1600115
G Atp5f1c ATP synthase F1 subunit gamma JBrowse link 17 72,209,321 72,231,562 RGD:1624291
G Atp5f1d ATP synthase F1 subunit delta JBrowse link 7 12,426,807 12,432,120 RGD:1600115
RGD:1624291
G Atp5f1e ATP synthase F1 subunit epsilon JBrowse link 3 172,563,105 172,566,007 RGD:1624291
G Atp5me ATP synthase membrane subunit e JBrowse link 14 2,325,308 2,326,436 RGD:1624291
G Atp5mf ATP synthase membrane subunit f JBrowse link 12 11,191,799 11,198,369 RGD:1624291
G Atp5mg ATP synthase membrane subunit g JBrowse link 8 49,220,441 49,227,273 RGD:1624291
G Atp5pb ATP synthase peripheral stalk-membrane subunit b JBrowse link 2 208,566,385 208,577,147 RGD:1624291
G Atp5pd ATP synthase peripheral stalk subunit d JBrowse link 10 103,967,340 103,972,552 RGD:1624291
G Atp5pf ATP synthase peripheral stalk subunit F6 JBrowse link 11 24,286,806 24,294,419 RGD:1624291
G Atp5po ATP synthase peripheral stalk subunit OSCP JBrowse link 11 32,081,606 32,087,918 RGD:1624291
G Cox5b cytochrome c oxidase subunit 5B JBrowse link 9 43,259,706 43,262,039 RGD:13792537
G Cyc1 cytochrome c-1 JBrowse link 7 117,409,576 117,411,953 RGD:13792537
G Mt-atp6 mitochondrially encoded ATP synthase membrane subunit 6 JBrowse link MT 7,919 8,599 RGD:1624291
G Mt-atp8 mitochondrially encoded ATP synthase membrane subunit 8 JBrowse link MT 7,758 7,961 RGD:1624291
G Stoml2 stomatin like 2 JBrowse link 5 58,472,561 58,476,158 RGD:1624291
RGD:1600115
regulation of mitochondrial ATP synthesis coupled proton transport term browser
Symbol Object Name JBrowse Chr Start Stop Reference
G Atpsckmt ATP synthase c subunit lysine N-methyltransferase JBrowse link 2 84,678,892 84,694,152 RGD:1600115
RGD:1624291
G Dnajc30 DnaJ heat shock protein family (Hsp40) member C30 JBrowse link 12 24,668,398 24,669,464 RGD:1624291

Term paths to the root
Path 1
Term Annotations click to browse term
  biological_process 19678
    metabolic process 11954
      ATP metabolic process 312
        oxidative phosphorylation 136
          mitochondrial ATP synthesis coupled proton transport 20
            negative regulation of mitochondrial ATP synthesis coupled proton transport 0
            regulation of mitochondrial ATP synthesis coupled proton transport + 2
Path 2
Term Annotations click to browse term
  biological_process 19678
    metabolic process 11954
      cellular metabolic process 10782
        cellular aromatic compound metabolic process 5534
          nucleobase-containing compound metabolic process 5311
            nucleobase-containing small molecule metabolic process 577
              nucleoside phosphate metabolic process 498
                nucleoside triphosphate metabolic process 119
                  nucleoside triphosphate biosynthetic process 89
                    purine nucleoside triphosphate biosynthetic process 73
                      purine ribonucleoside triphosphate biosynthetic process 72
                        ATP biosynthetic process 62
                          ATP synthesis coupled proton transport 28
                            mitochondrial ATP synthesis coupled proton transport 20
                              negative regulation of mitochondrial ATP synthesis coupled proton transport 0
                              regulation of mitochondrial ATP synthesis coupled proton transport + 2
paths to the root

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RGD is funded by grant HL64541 from the National Heart, Lung, and Blood Institute on behalf of the NIH.