Carbohydrate Metabolism

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*[[Pyruvate Kinase|pyruvate kinase]]
*[[Pyruvate Kinase|pyruvate kinase]]
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'''Citric Acid Cycle'''
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* [[Citric Acid Cycle]]
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'''Gluconeogenesis'''
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* [[Citric Acid Cycle]]
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* [[Glycogen Metabolism & Gluconeogenesis]]
* [[Glycogen Metabolism & Gluconeogenesis]]
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*[[Gluconeogenesis]]
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'''Other proteins:'''
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* [[Shane Harmon Sandbox|Phosphoglycerate Kinase (PGK)]]
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* [[Phosphoglycerate Mutase]]
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* [[Pyruvate decarboxylase]]
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* [[Pyruvate Kinase]]
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* [[Electron Transport & Oxidative Phosphorylation]]
* [[Electron Transport & Oxidative Phosphorylation]]
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* [[Acid-beta-glucosidase]]
* [[Acid-beta-glucosidase]]
* [[Alpha-glucosidase]]
* [[Alpha-glucosidase]]
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* [[Mannosidase]]
* [[Mannosidase]]
* [[Stancu Phosphoglucoisomerase Sandbox 1|Phosphoglucose Isomerase Structure & Mechanism]]
* [[Stancu Phosphoglucoisomerase Sandbox 1|Phosphoglucose Isomerase Structure & Mechanism]]
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* [[Pyruvate decarboxylase]]
To view automatically seeded indices concerning [[Carbohydrate Metabolism]] See:
To view automatically seeded indices concerning [[Carbohydrate Metabolism]] See:

Revision as of 13:54, 20 September 2022

Structure of the Carbohydrate Amylose
Structure of the Carbohydrate Amylose

Under development!!!

Carbohydrate Metabolism is a collection of metabolic processes responsible for the formation, breakdown, and interconversion of carbohydrates in living organisms. It includes, Carbon Fixation, The Citric Acid Cycle, Glycolysis, Glycogenesis, Gluconeogenesis, and Oxidative Phosphorylation.

Glycolysis

Step 1: Hexokinase:

Step 2: Phosphoglucose isomerase

Step 3: Phosphofructokinase

Step 4: Aldolase

Step 5: Triose Phosphate Isomerase

Step 6: Glyceraldehyde-3-phosphate Dehydrogenase

Step 7: Phosphoglycerate kinase

Step 8: Phosphoglycerate mutase

Step 9: Phosphopyruvate hydratase (enolase)

Step 10: Pyruvate kinase

Citric Acid Cycle

Gluconeogenesis

Other proteins:

To view automatically seeded indices concerning Carbohydrate Metabolism See:


See also:

Proteopedia Page Contributors and Editors (what is this?)

Alexander Berchansky, David Canner

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