Examples of 'acetyl-coa' in a sentence
Meaning of "acetyl-coa"
Acetyl-CoA is a molecule involved in metabolism and energy production in living organisms
How to use "acetyl-coa" in a sentence
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acetyl-coa
This enymatic reaction is dependent on acetyl-CoA.
A major source of Acetyl-CoA is fatty acid oxidation.
This enzymatic reaction is dependent on acetyl-CoA.
This acetyl-CoA merges with some oxaloacetic acid.
Acetogenesis proceeds via the formation of acetyl-CoA.
No acetyl-CoA synthetase activity was detectable in the absence of CoA.
Ketone bodies are used by neurons as a source of Acetyl-CoA.
Oxidation of acetyl-CoA to carbon dioxide in the citric acid cycle.
Other conversions between pyruvate and acetyl-CoA are possible.
Can also use acetyl-CoA as a substrate but more slowly.
It regulates through the ratio of acetyl-CoA versus CoA.
Several of these acetyl-CoA derived metabolites have industrial utility.
It is used to catalyse the reduction of carbon monoxide to acetyl-CoA.
The effect of acetyl-CoA on citrate synthase itself was studied also.
The sole carbon feed stock of the pathway is acetyl-CoA.
See also
Iii the graminicide is one or more acetyl-CoA carboxylase inhibitors.
Pyruvate decarboxylation by the pyruvate dehydrogenase complex produces acetyl-CoA.
The reaction catalyzed by acetyl-CoA synthetase takes place in two steps.
Preferably the reaction is started with the addition of acetyl-CoA.
The gene coding for acetyl-CoA synthase is generally expressed as acs.
Carbon dioxide reduction in all homoacetogens occurs by the acetyl-CoA pathway.
Some of the accumulated acetyl-CoA is diverted to increased cholesterol biosynthesis, resulting in hypercholesterolemia.
It involves a series of reactions using the acetyl-CoA previously generated.
In one aspect, malonate production is improved by increasing the biosynthesis of acetyl-CoA.
In glyoxysomes the fatty acids are hydrolyzed to acetyl-CoA by peroxisomal β-oxidation enzymes.
Through the process of glycolysis sugars are broken down into acetyl-CoA.
Some of the documented acetyl-CoA is diverted to increased cholesterol biosynthesis, resulting in hypercholesterolemia.
Three-dimensional structure of the biotin carboxylase subunit of acetyl-CoA carboxylase.
Two acetyl-CoA molecules react enzymatically catalyzed to one acetoacetyl-CoA molecule.
The pyruvate undergoes oxidative decarboxylation where it converts into acetyl-CoA.
The apparent km of PhnO for the substrate acetyl-CoA was determined in similar experiments.
The diagram to the left shows how fatty acids are converted into acetyl-CoA.
Low oxydizing phosphorylation should promote acetyl-CoA pathways to the ketone bodies.
Insulin stimulates acetyl-CoA carboxylase, while epinephrine and glucagon inhibit its activity.
Such enzymes transfer an acetyl group from acetyl-CoA to a primary amine.
Under these circumstances acetyl-CoA is diverted to the formation of acetoacetate and beta-hydroxybutyrate.
This occurs via the conversion of pyruvate into acetyl-CoA in the mitochondrion.
The cytosolic acetyl-CoA is used for fatty acid synthesis and the production of cholesterol.
Carbon dioxide reduction is carried out by the key enzyme acetyl-CoA synthase.
The oxidative conversion of pyruvate into acetyl-CoA is referred to as the pyruvate dehydrogenase reaction.
Pyruvate carboxylase activity in both strains increased with increasing acetyl-CoA concentrations.
It is well known that different acetyl-CoA carboxylase isoforms exist across higher plants.
The acetate switch is controlled by the acetate-scavenging enzyme acetyl-CoA synthetase.
This enzyme has been reported to reduce acetyl-CoA and butyryl-CoA to their corresponding aldehydes.
The AATase synthesizes isoamyl acetate by the condensation of isoamyl alcohol and acetyl-CoA.
Alternatively, the microorganism may be capable of generating acetyl-CoA without an external source of acetate.
This happens until the entire fatty acid has been converted to molecules of acetyl-CoA.
These substrates must be first converted into acetyl-CoA to be used for the PHAs biosynthesis.
The synthesis of acetyl-CoA from acetic acid may take advantage of two different biosynthesis pathways.
In another example, the acetaldehyde may be obtained by conversion of acetyl-CoA by acetaldehyde dehydrogenase.