Linked from
The 49 pages that link to Adenosine triphosphate, each with the reason it gives.
PhotosynthesisRelated: Photosynthesis produces ATP to power carbon fixation and other cellular work.
Nitrogen fixationRelated: Nitrogenase consumes substantial ATP while reducing nitrogen gas.
Cellular respirationRelated: It is the principal energy product captured by cellular respiration.
GlycolysisRelated: Glycolysis spends ATP early and produces more ATP later.
MetabolismRelated: ATP couples energy-releasing reactions to energy-requiring metabolic work.
Anaerobic respirationRelated: Respiration captures part of the energy from electron transfer in ATP.
Cyanide poisoningRelated: Its production falls when cyanide blocks mitochondrial respiration.
MyosinRelated: Myosin uses ATP binding and hydrolysis to control attachment and movement.
ATP synthaseRelated: ATP synthase produces this molecule from ADP and inorganic phosphate.
Active transportRelated: Many transport proteins power uphill movement by hydrolyzing ATP.
RuBisCORelated: ATP powers later Calvin-cycle reactions that regenerate RuBisCO’s substrate.
RiboflavinRelated: ATP supplies phosphate when riboflavin is converted into FMN.
CreatineRelated: Creatine supports the rapid regeneration of this molecule when energy demand rises.
Pyruvate carboxylaseRelated: Its hydrolysis drives the enzyme’s ATP-dependent carboxylation.
ATPaseRelated: It is the substrate whose hydrolysis powers ATPases.
Peter D. MitchellRelated: Mitchell’s theory explains how membrane gradients support ATP production.