Linked from
The 50 pages that link to Glycolysis, each with the reason it gives.
GlucoseRelated: It begins glucose breakdown in the cytosol and can proceed without oxygen.
ATPRelated: It can produce ATP rapidly, including when oxygen-dependent metabolism is limited.
CarbohydrateRelated: It is a central route for extracting energy from glucose.
Lactate dehydrogenaseRelated: It supplies pyruvate and NADH for lactate production.
PhosphateRelated: Phosphate groups trap and transform intermediates throughout this pathway.
PhosphorylationRelated: Phosphorylation traps glucose and helps drive several glycolytic reactions.
GlycogenolysisRelated: Glucose-6-phosphate from glycogen can enter this energy-producing pathway.
Adenosine diphosphateRelated: Several glycolytic reactions transfer phosphate to ADP to produce ATP.
NADHRelated: Glycolysis generates NADH when glyceraldehyde 3-phosphate is oxidized.
AMP-activated protein kinaseRelated: This ATP-generating pathway can be promoted by AMPK signaling.
AldoseRelated: Glucose, an aldose, enters this central pathway for energy extraction.
CoenzymeRelated: NAD⁺ accepts electrons during a key oxidation step in the pathway.
KetoseRelated: Ketose intermediates, including fructose 1,6-bisphosphate, are central to glycolysis.
GlyceraldehydeRelated: Its intermediate glyceraldehyde 3-phosphate is derived from glyceraldehyde.
Pyruvate carboxylaseRelated: It generates the pyruvate that can be diverted into oxaloacetate.
Gerty CoriRelated: It provides the pathway context for the Coris' work on sugar breakdown.
SugarRelated: Cells can extract energy from glucose through this pathway.
AnaerobicRelated: It supplies ATP directly and feeds fermentation when oxygen is unavailable.