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How many ATP are produced from an 18 carbon fatty acid?

How many ATP are produced from an 18 carbon fatty acid?

146 moles
The net result of the oxidation of one mole of oleic acid (an 18-carbon fatty acid) will be 146 moles of ATP (2 mole equivalents are used during the activation of the fatty acid), as compared with 114 moles from an equivalent number of glucose carbon atoms.

How many ATP are produced from 1g of carbohydrates?

a value of 31 ATP molecules, then on a weight basis, we find that 0.17 molecules of ATP and 0.41 molecules of ATP are formed when one gram of glucose and one gram of palmitic acid are completely oxidised, respectively.

How much ATP does a 20 carbon fatty acid produce?

A) About 1,200 ATP molecules are ultimately produced per 20-carbon fatty acid oxidized. B)

How many ATP are formed from an 18 carbon fatty acid quizlet?

Stearic acid has 18 carbon atoms. Thus, the yield of ATP per carbon atom is 120 ÷ 18 = 6.67.

How many ATP does a 14 carbon fatty acid produce?

In addition, two equivalents of ATP are lost during the activation of the fatty acid. Therefore, the total ATP yield can be stated as: (n – 1) * 14 + 10 – 2 = total ATP….Energy yield.

Source ATP Total
1 acetyl CoA x 10 ATP = 10 ATP (Theoretically 12 ATP)
TOTAL = 14 ATP

How many ATP are produced?

Biology textbooks often state that 38 ATP molecules can be made per oxidized glucose molecule during cellular respiration (2 from glycolysis, 2 from the Krebs cycle, and about 34 from the electron transport system).

How many ATP are produced from a 15 carbon fatty acid?

The most straightforward way to accomplish this task would be to exit as malate, and then be oxidized and decarboxylated by the malic enzyme. The ME generates NADPH, which is energetically equivalent to NADH. Therefore, total yield of ATP from the C15 fatty acid is: -2+34+15+51-1+21 = 118 ATP.

How many ATP does a 22 carbon fatty acid produce?

This gives us a grand total of 31 NADH, 15 FADH2 and 8 GTP molecules. The 31 NADH produce 77.5 ATP while the 15 FADH2 produce 22,5 ATP along the electron transport chain. The 8 GTP are transformed into 8 ATP. This gives us a total of 108 ATP molecules.

How many ATP are produced per fatty acid?

Complete oxidation of one palmitate molecule (fatty acid containing 16 carbons) generates 129 ATP molecules.

How many ATP would ultimately be generated from the complete oxidation of the 18-carbon saturated fatty acid stearic acid?

The CoA of acyl-CoA is a molecular tag indicating that the acyl group is destined for oxidation. The complete β-oxidation of stearic acid produces a net 120 ATPs.

How many ATPs are in an 18 carbon fatty acid?

The 18-carbon fatty acid is fragmented into 9 2-carbons resulting in 9 AcetylCoAs. These enter the Kreps cycle resulting in 2 ATPs per 2 AcetylCoAs. (2X4=8 ATP also 8 FADH2s) Then it enters the ETC resulting in 34 ATPs per 2 FADH2s. (4X34=134 ATP) Am I just completely wrong in figuring this way?? Specializes in Ante-Intra-Postpartum, Post Gyne.

How is excess carbohydrate and ATP used in the body?

Excess carbohydrate and ATP are used by the liver to synthesize glycogen. The pyruvate produced during glycolysis is used to synthesize fatty acids. When there is more glucose in the body than required, the resulting excess pyruvate is converted into molecules that eventually result in the synthesis of fatty acids within the body.

How is the amount of ATP produced by the aerobic oxidation?

Fatty acids are changed in a series of reactions called beta-oxidation into acetyl CoA molecules, which enter cell metabolism at the Kreb’s Cycle. The number of fatty acids, especially, varies for different fats which is why the number of ATP generated / fat molecule also varies.

How many ATPs would be generated from the breakdown of a.?

To completely oxidize the 18-carbon fatty acid above, 8 cycles of beta-oxidation have to occur. This will produce: Those 9 acetyl-CoAs can continue into the citric acid cycle, where they can produce: Adding up the NADH and FADH2, the electron transport chain ATP production from beta-oxidation and the citric acid cycle looks like this: