Examples of 'pyruvate decarboxylase' in a sentence
Meaning of "pyruvate decarboxylase"
pyruvate decarboxylase - Pyruvate decarboxylase is an enzyme involved in the metabolic process of converting pyruvate into acetaldehyde and carbon dioxide. It plays a significant role in various biochemical pathways, such as fermentation and the production of certain organic compounds
How to use "pyruvate decarboxylase" in a sentence
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pyruvate decarboxylase
The concentration of pyruvate decarboxylase was varied.
Pyruvate decarboxylase cleaves pyruvate into acetaldehyde and carbon dioxide.
Yeast microorganisms within the scope of the invention have reduced pyruvate decarboxylase activity.
Pyruvate decarboxylase starts this process by converting pyruvate into acetaldehyde and carbon dioxide.
A yeast strain according to claim 1 having a reduced pyruvate decarboxylase activity.
Pyruvate decarboxylase catalyzes the nonoxidative decarboxylation of pyruvate to produce acetaldehyde and carbon dioxide.
Generally, ethanol producing cells contain an alcohol dehydrogenase and pyruvate decarboxylase.
Many other pyruvate decarboxylase genes which provide a functional equivalent can be isolated from other organisms.
Generally, ethanol-producing cells contain an alcohol dehydrogenase and a pyruvate decarboxylase.
In the presence of pyruvate decarboxylase and alcohol dehydrogenase, ethanol is formed.
This ylide can then attack pyruvate, which is held by the enzyme pyruvate decarboxylase.
By comparison, the activity of pyruvate decarboxylase begins to increase only when ethanol production occurs.
A yeast strain according to claim 17 wherein the promoter sequence is a pyruvate decarboxylase gene promoter.
Pyruvate decarboxylase depends on cofactors thiamine pyrophosphate ( TPP ) and magnesium.
Although bacterial alcohol dehydrogenases are common in many organisms, few bacteria have pyruvate decarboxylase.
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Figure 4 illustrates the relationship between pyruvate decarboxylase activity in recombinants and the extent of growth.
Pyruvate arising from glycolysis is converted to acetaldehyde and CO2 by pyruvate decarboxylase.
The deleted or inactivated gene encoding pyruvate decarboxylase is preferably a PDC2 gene.
Pyruvate decarboxylase creates the means of CO2 elimination, which the cell dispels.
The microorganism also includes a reduction in pyruvate decarboxylase ( PDC ) activity as compared to a parental microorganism.
The pyruvate decarboxylase activity can be measured by known methods, e . g.
A method according to Claim 7 wherein said alcohol dehydrogenase and pyruvate decarboxylase are from Zymomonas mobilis.
The promoter of pyruvate decarboxylase gene of K. lactis ( KlPDC ) is particularly preferred.
Example 7, Comparison of various pyruvate decarboxylase.
Using pyruvate decarboxylase has inter alia the advantage that no co-factor recycling ( NADH ) was necessary.
This reaction is catalyzed by the pyruvate decarboxylase ( PDC ) enzyme.
The reaction mechanisms involved in pyruvate decarboxylase mediated formation of L-phenylacetyl carbinol have been reported.
In one embodiment, the microorganism has reduced or no pyruvate decarboxylase ( PDC ) activity.
In the invention, the variant pyruvate decarboxylase 5 is preferably a yeast temperature-sensitive at 34°C or higher.
The process according to claim 1, wherein the decarboxylase is a pyruvate decarboxylase ( PDC ).
Among them, the genes having a major function as pyruvate decarboxylase are PDC1 and PDC5 genes.
The targeted gene is preferably a pyruvate decarboxylase ( PDC ) gene.
The normal catalytic rate of pyruvate decarboxylase is kcat 10 s-1.
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Examples of using Pyruvate
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This excess of pyruvate is converted into lactate
Pyruvate kinase deficiency and disorders of glycolysis
Here an anaerobic pyruvate dehydrogenase pathway dominates
Examples of using Decarboxylase
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Decarboxylase inhibitors include benserazide and carbidopa
Crystallized oxalate decarboxylase and methods of use
The decarboxylase inhibitor may also be benserazide