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Usage Examples
Filter by Meaning A coenzyme called biotin is necessary for the synthesis of fatty acids.
Riboflavin acts as a coenzyme in energy metabolism.
The coenzyme NADH is essential for oxidative phosphorylation.
Coenzyme Q10 plays a crucial role in the electron transport chain.
Thiamine pyrophosphate is a coenzyme involved in the metabolism of carbohydrates.
Coenzyme A is required for the synthesis of steroid hormones.
Folate serves as a coenzyme in the synthesis of nucleic acids.
Coenzyme A is involved in fatty acid metabolism.
The presence of a coenzyme is essential for the conversion of pyruvate into acetyl-CoA.
Coenzyme Q10 is a popular dietary supplement that has been shown to have antioxidant properties.
Thiamine is a coenzyme that plays a role in the nervous system's functioning.
Coenzyme A is essential for the synthesis of fatty acids and cholesterol.
Riboflavin is a coenzyme involved in the electron transport chain.
The coenzyme biotin is necessary for the metabolism of amino acids and fatty acids.
Coenzyme Q10 is a compound that is involved in energy production in cells.
Cyanocobalamin is a coenzyme that aids in the synthesis of red blood cells and the maintenance of a healthy nervous system.
Vitamin B6 acts as a coenzyme in the synthesis of neurotransmitters.
Riboflavin is a coenzyme that helps enzymes break down carbohydrates, fats, and proteins.
Thiamine pyrophosphate is a coenzyme required for the metabolism of carbohydrates.
Methylcobalamin is a coenzyme form of vitamin B12 that is necessary for the synthesis of DNA and the metabolism of fatty acids.
Tetrahydrofolic acid is a coenzyme that is involved in the synthesis of DNA and RNA.
Pyridoxal phosphate is a coenzyme that assists in the synthesis of neurotransmitters.
Coenzyme Q10 is a popular supplement that is believed to have antioxidant properties.
Coenzyme Q10 is essential for the production of energy in the human body.
The coenzyme Q10 is a popular dietary supplement.
Riboflavin is a coenzyme that is involved in the metabolism of fats, carbohydrates, and proteins.
Riboflavin is a coenzyme that plays a role in the metabolism of carbohydrates, fats, and proteins.
Coenzyme A is involved in the synthesis of fatty acids in the body.
Pyridoxal phosphate functions as a coenzyme in the metabolism of amino acids.
Vitamin B12 is a coenzyme required for the synthesis of red blood cells.
Folic acid is a coenzyme necessary for the production of DNA.
Pyridoxal phosphate is a coenzyme that plays a role in the metabolism of amino acids.
The enzyme lactate dehydrogenase requires the coenzyme NADH for its activity.
Vitamin B6 acts as a coenzyme for over 100 different enzymes in the body.
The enzyme catalase requires the coenzyme heme to break down hydrogen peroxide into water and oxygen.
Biotin is a coenzyme that is involved in the metabolism of carbohydrates, fats, and proteins.
Riboflavin is a coenzyme that helps in the conversion of food into energy.
Riboflavin is an essential coenzyme in the metabolism of carbohydrates.
Folic acid is a coenzyme that is important for the synthesis of DNA and RNA.
Biotin is a coenzyme that is important for the metabolism of fatty acids, amino acids, and glucose.
Riboflavin is a coenzyme that plays a crucial role in energy metabolism.
The enzyme pyruvate dehydrogenase requires the coenzyme thiamine pyrophosphate to convert pyruvate into acetyl-CoA.
The enzyme DNA polymerase requires a coenzyme called ATP to function properly.
Thiamine pyrophosphate is a coenzyme that is involved in many enzymatic reactions, including the breakdown of glucose.
The coenzyme tetrahydrofolate is important in the metabolism of amino acids.
The enzyme carbonic anhydrase requires the coenzyme zinc to function.
Thiamine pyrophosphate is a coenzyme that helps in the metabolism of glucose.
Riboflavin is a precursor of a coenzyme involved in energy metabolism.
Lipoic acid is a coenzyme that is necessary for the metabolism of carbohydrates and the production of energy.
Vitamin B12 is a coenzyme that is involved in the synthesis of red blood cells.
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