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Ontology Browser

Term:
negative regulation of mitochondrial ATP synthesis coupled electron transport (GO:1905447)
Annotations: Rat: (1) Mouse: (1) Human: (2) Chinchilla: (1) Bonobo: (1) Dog: (1) Squirrel: (1) Pig: (1)
Parent Terms Term With Siblings Child Terms
mitochondrial electron transport, cytochrome c to oxygen  
mitochondrial electron transport, NADH to ubiquinone +   
mitochondrial electron transport, succinate to ubiquinone  
mitochondrial electron transport, ubiquinol to cytochrome c  
negative regulation of methane biosynthetic process from 3-(methylthio)propionic acid 
negative regulation of methane biosynthetic process from carbon monoxide 
negative regulation of methane biosynthetic process from dimethyl sulfide 
negative regulation of methane biosynthetic process from dimethylamine 
negative regulation of methane biosynthetic process from formic acid 
negative regulation of methane biosynthetic process from methanethiol 
negative regulation of methane biosynthetic process from methylamine 
negative regulation of methane biosynthetic process from trimethylamine 
negative regulation of mitochondrial ATP synthesis coupled electron transport +   
Any process that stops, prevents or reduces the frequency, rate or extent of mitochondrial ATP synthesis coupled electron transport.
negative regulation of mitochondrial ATP synthesis coupled proton transport 
positive regulation of mitochondrial ATP synthesis coupled electron transport +   
regulation of mitochondrial ATP synthesis coupled electron transport +   
regulation of mitochondrial electron transport, NADH to ubiquinone +   

Synonyms
Exact Synonyms: down regulation of mitochondrial ATP synthesis coupled electron transport ;   downregulation of mitochondrial ATP synthesis coupled electron transport
Narrow Synonyms: inhibition of mitochondrial ATP synthesis coupled electron transport
Definition Sources: GO_REF:0000058, GOC:bc, GOC:PARL, GOC:TermGenie, PMID:23707074

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