CoQ10 (Coenzym Q10): the pathway in the body
CoQ10 (Coenzym Q10) is part of the pathway “Coenzyme Q10”. This page shows the whole pathway; the station of CoQ10 (Coenzym Q10) is highlighted.
Where this laboratory value sits: Q10 in the blood — in lipoproteins. In the blood, Q10 travels in lipoproteins, mostly in its reduced form, ubiquinol. The body makes most of it itself; a smaller part comes from food. Source 2
In brief
Coenzyme Q10 is a fat-soluble molecule with a ring and a chain of ten isoprene units. In the inner mitochondrial membrane it carries electrons from one respiratory chain complex to the next.
13 stations · 4 sourcesSwipe the graphic sideways
The pathway step by step
- Acetyl-CoA → Mevalonate HMG-CoA reductase · NADPH Mevalonate is formed via HMG-CoA. This stretch supplies not only cholesterol but also the building blocks for the tail of Q10. Source 4, 1
- Mevalonate → Farnesyl-PP FPP synthase Mevalonate gives rise to activated isoprene units, which are linked to form farnesyl pyrophosphate. Several pathways branch off here. Source 1
- Farnesyl-PP → Decaprenyl-PP PDSS1, PDSS2 Two enzymes extend the chain to ten isoprene units. Hence the name Q10: in humans the molecule carries ten of these building blocks. Source 1
- Decaprenyl-PP → Ubiquinone (Q10) COQ2 and COQ enzymes The enzyme COQ2 attaches the chain to a ring of 4-hydroxybenzoate. Further COQ enzymes modify the ring in the mitochondrion; ubiquinone is then complete. Source 1
- Ubiquinone (Q10) → Q10 in the blood · Lipoproteins In the blood, Q10 travels in lipoproteins, mostly in its reduced form, ubiquinol. The body makes most of it itself; a smaller part comes from food. Source 2
- Ubiquinone → Ubiquinol Complexes I and II · NADH, FADH2 Complex I and complex II pass electrons from NADH and FADH2 to Q10. With two electrons and two protons, ubiquinol is formed. Source 2
- Ubiquinol → Complex III · Cytochrome c Complex III takes over the electrons and hands them on via cytochrome c. Q10 is then oxidised again and starts over. Source 2
- Complex III → Proton gradient With each round, protons are pumped out of the matrix. This builds up a gradient across the inner mitochondrial membrane. Source 2
- Proton gradient → ATP ATP synthase · ADP The protons flow back through ATP synthase. Its rotation joins ADP and phosphate to form ATP. Source 2
- Ubiquinol → Membrane lipids Ubiquinol also donates electrons outside the respiratory chain. It traps radicals in membranes and so interrupts the chain reaction of lipid oxidation. Source 2
Cofactors in this pathway
- Tyrosine — Supplies the 4-hydroxybenzoate ring, the part of the molecule that accepts electrons Source 1In the ORY catalogue as a laboratory value: Tyrosin
- NADPH — Electron donor of HMG-CoA reductase on the way to the isoprene tail Source 4
- SAM (from methionine) — Methyl group donor of the COQ enzymes that modify the ring of the molecule Source 1In the ORY catalogue as a laboratory value: Methionin
- NAD⁺ — As NADH, the electron source for complex I, which passes them to Q10 Source 2In the ORY catalogue as a laboratory value: NAD⁺ (Nicotinamidadenindinukleotid)
- FAD (vitamin B2) — As FADH₂, the electron source for complex II, which passes them to Q10 Source 2
- Vitamin E — Ubiquinol passes electrons to oxidised tocopherol; both sit in the same membrane Source 2In the ORY catalogue as a laboratory value: Vitamin E (Tocopherol)
What acts on this pathway
- Statins — Statins inhibit HMG-CoA reductase, which also stands at the start of the Q10 pathway. Lower Q10 levels in the blood have been described with statins; part of this follows the lipoproteins in which Q10 travels. Source 3
Sources
- Guerra RM, Pagliarini DJ. Coenzyme Q biochemistry and biosynthesis. Trends Biochem Sci 2023 · PubMed 36702698
- Wang Y, Lilienfeldt N, Hekimi S. Understanding coenzyme Q. Physiol Rev 2024 · PubMed 38722242
- Nawarskas JJ. HMG-CoA reductase inhibitors and coenzyme Q10. Cardiol Rev 2005 · PubMed 15705257
- Sharpe LJ, Brown AJ. Controlling cholesterol synthesis beyond 3-hydroxy-3-methylglutaryl-CoA reductase (HMGCR). J Biol Chem 2013 · PubMed 23696639
Related pathways
- Cholesterol and lipoproteins — mevalonate
- Carnitine — Methionin, NAD⁺ (Nicotinamidadenindinukleotid)
- Estradiol — Methionin, NAD⁺ (Nicotinamidadenindinukleotid)
- Dopamine, noradrenaline, adrenaline — Methionin, NAD⁺ (Nicotinamidadenindinukleotid)
- Estrogen breakdown — Methionin, NAD⁺ (Nicotinamidadenindinukleotid)
As of 2026-09-16. Draft, written by Claude to schema v2; sources checked in PubMed; expert approval pending
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