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Typically it will produce a variable amount of Guanosine-5'-triphosphate (aka GTP), but in theory ATP can be involved so to answer your question typically no but possibly yes.

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What process of ATP production begins with the breakdown of pyruvic acid?

The process of ATP production that begins with the breakdown of pyruvic acid is the citric acid (Krebs) cycle. Pyruvic acid is converted to acetyl-CoA, which then enters the citric acid cycle to produce ATP through a series of chemical reactions in the mitochondria.


What nutrient can yield energy the quickest in the citric acid cycle?

Acetyl-CoA can yield energy the quickest in the citric acid cycle. Acetyl-CoA is derived from the breakdown of carbohydrates, fats, and proteins, and it enters the citric acid cycle to produce ATP, which is the cell's primary energy source.


What is the net yield of ATP from the citric acid cycle?

The net yield of ATP from one turn of the citric acid cycle is 1 ATP molecule through substrate-level phosphorylation. However, additional ATP can be generated indirectly through the electron transport chain and oxidative phosphorylation using reducing equivalents generated during the citric acid cycle.


Describe what occurs during the citric acid cycle?

During the citric acid cycle, also known as the Krebs cycle, acetyl-CoA is oxidized to generate energy in the form of ATP, NADH, and FADH2. This cycle takes place in the mitochondria and involves a series of enzyme-catalyzed reactions that produce carbon dioxide as a byproduct. The citric acid cycle is a key step in cellular respiration, providing electrons that will be used in the electron transport chain to generate more ATP.


Why is the kerbs cycle also known as the citric acid cylce?

The Krebs cycle is also known as the citric acid cycle because citric acid is the first compound formed in the cycle. The cycle then proceeds to harvest energy through a series of chemical reactions involving citric acid and other molecules, ultimately producing ATP for cellular energy.

Related Questions

What would happen if ATP prodution suddenly stopped?

The cell will not be in a position to produce ATP by using the citric acid cycle.


What process of ATP production begins with the breakdown of pyruvic acid?

The process of ATP production that begins with the breakdown of pyruvic acid is the citric acid (Krebs) cycle. Pyruvic acid is converted to acetyl-CoA, which then enters the citric acid cycle to produce ATP through a series of chemical reactions in the mitochondria.


Is the citric acid cycle aerobic or anaerobic?

The citric acid cycle, also known as the Krebs cycle, is an aerobic process that occurs in the mitochondria of cells. It requires oxygen to function efficiently and produce energy in the form of ATP.


What are the Outputs of the citric acid cycle?

The net inputs for citric acid cycle are Acetyl CoA, NADH, and ADP. The Net outputs for the citric acid cycle are ATP, NAD, and carbon dioxide.


What nutrient can yield energy the quickest in the citric acid cycle?

Acetyl-CoA can yield energy the quickest in the citric acid cycle. Acetyl-CoA is derived from the breakdown of carbohydrates, fats, and proteins, and it enters the citric acid cycle to produce ATP, which is the cell's primary energy source.


Glycolysis and the citric acid cycle are similar in that they both produce?

ATP, NADH, and carbon dioxide as products that can be used for energy production in the cell. Glycolysis occurs in the cytoplasm and converts glucose into pyruvate, while the citric acid cycle occurs in the mitochondria and further metabolizes pyruvate to produce ATP, NADH, FADH2, and CO2.


What is the main function of the Krebs's cycle?

The main function of the Krebs cycle is the complete oxidation of glucose to produce ATP. It is also referred to as the citric acid cycle.


What is the main function of the kreb's?

The main function of the Krebs cycle is the complete oxidation of glucose to produce ATP. It is also referred to as the citric acid cycle.


Where do reactions of the Citric Acid cycle occur in?

The reactions of the Citric Acid cycle occur in the matrix of the mitochondria. This is where the enzymes responsible for the cycle are located, allowing the series of chemical reactions to take place and ultimately produce ATP, which is the energy currency of the cell.


How much ATP is made by the citric acid cycle?

The citric acid cycle generates 1 ATP molecule per turn through substrate-level phosphorylation. However, since the cycle turns twice for each glucose molecule, a total of 2 ATP molecules are produced per glucose molecule during the citric acid cycle.


What is the net yield of ATP from the citric acid cycle?

The net yield of ATP from one turn of the citric acid cycle is 1 ATP molecule through substrate-level phosphorylation. However, additional ATP can be generated indirectly through the electron transport chain and oxidative phosphorylation using reducing equivalents generated during the citric acid cycle.


Citric acid forms during which part of cellular respiration?

Citric acid is formed during the citric acid (Krebs) cycle, which is the second stage of cellular respiration. In this cycle, acetyl-CoA is oxidized to produce ATP, CO2, and NADH in a series of reactions that take place in the mitochondria.