Gluconeogenesis. gluco neo genesis sugar (re)new make/ create glycolysis glucose pyruvate lactate...

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Gluconeogenes is

Transcript of Gluconeogenesis. gluco neo genesis sugar (re)new make/ create glycolysis glucose pyruvate lactate...

Page 1: Gluconeogenesis. gluco neo genesis sugar (re)new make/ create glycolysis glucose pyruvate lactate gluconeogenesis.

Gluconeogenesis

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gluco neo genesis

sugar (re)new make/create

glycolysis

glucose

pyruvatelactate

gluconeogenesis

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Topics: Gluconeogenesis

1. Principles, substrates & relationship to glycolysis

2. Bypass of irreversible steps in glycolysis

3. Link between liver gluconeogenesis and muscle/RBC/brain glycolysis; the Cori and Alanine cycles

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Gluconeogenesis

• Occurs in all animals, plants, fungi and microbes

• Occurs largely in the liver; some in renal cortex• Of 10 enzymatic steps, 7 are reversals of

glycolytic reactions

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Carbohydrate synthesis from

simple precursors

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Metabolites feed into gluconeogenesis

at various points

mainpath

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All AA can feed into

gluconeogenesis except leucine

andlysine

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TCA intermediates are gluconeogenic;

funnel through

oxaloacetate

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Bypass of irreversible steps in glycolysis

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Irreversible glycolytic stepsbypassed

1.Hexokinase (hexK)

2.Phosphofructokinase-1 (PFK-1)

3.Pyruvate kinase (PyrK)

by Glucose-6-phosphatase

by Fructose 1,6-bisphosphatase (FBP-1)

by Pyruvate Carboxylase & Phosphoenolpyruvate carboxykinase (PEPCK)

These 3 key enzymes

glycolysis gluconeogenesis

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Pyruvate can go “up” or “down”

depending upon energy needs

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First bypass step is generation of PEP from pyruvate via

oxaloacetate

*Note:In order to cross the mito

membrane, oxaloacetate must:

1.Be reduced to malate2.Go through the malate

shuttle3.Be reoxidized to

oxaloacetate

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Addition of CO2 to pyruvate to form oxaloacetate

•Hydrolysis of ATP

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Decarboxylation and

phosphorylation to PEP

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2nd & 3rd bypass steps are near the

end of gluconeogenesis

(“top” of glycolysis)

Regulation of FBP-1 by AMP and F2,6P

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Dephosphorylation of G6P,3rd bypass reaction

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Glucose 6-phosphatase removes the phosphate to liberate free glucose

• This is primarily a function of the liver to buffer blood glucose levels

• G6Pase is NOT present in brain and muscle! (Gluconeogenesis does not occur in these tissues)

glucose-6-P + H2O ó glucose + Pi

G6Pase

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Gluconeogenesis is energetically expensive to cells (hepatocytes)

cost

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Note that both Glycolysis and Gluconeogenesis are energetically

favorable under physiological conditions and therefore both ~ irreversible

processes

Glycolysis ΔG[phys] = -63 kJ/mol

Gluconeogenesis ΔG[phys] = -16 kJ/mol

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Liver is the major source of blood glucose from GN

Is the primary gluconeogenic organ

Produces glucose for export to brain, muscle, RBC’s

Uses many small metabolites and fatty acids to feed GN

Liver function is highly sensitive to insulin & glucagon

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The Cori Cycle

2 ATP

6 ATP2

Lactate and glucose shuttle between active muscle/RBC and liver (glucagon/insulin reg.)

Liver gluconeogenesis buffers the blood glucose for use by muscle, RBC’s and brain (120 g/day)

*Note: the brain fully oxidizes glucose, so it does not funnel back lactate

GN

GL

RBCs

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The Alanine CycleThe liver can also use the amino acid Alanine similarly to Lactate

Following transamination to pyruvate, gluconeogenesis allows the liver to convert it to glucose for secretion into the blood

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Significance

Remove lactate in muscle

Increase blood sugar level using amino acids(alanine) in special situation

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You should know:

1. Chemical steps of GN; associate enzymes

2. Requirement for mito shuttle system

3. Precursors that can enter GN;

4. Relationship of GL to GN; shared enzymes, irreversible steps

5. Liver as the primary GN organ; Cori Cycle, Alanine Cycle