Course Contents
THEORY
1. Metabolism: detailed description of glycolysis and catabolism of any other hexose; regulation and bioenergetics of glycolysis. Anabolic role of glycolysis; fate of pyruvate under aerobic and anaerobic conditions, lactate, acetyl CoA and ethanol formation; alcoholic fermentation; gluconeogenesis, its regulation and significance in the tissues; utilization of other carbohydrates in glycolysis; phosphorolysis of glycogen and starch; regulation of glycogen metabolism; utilization of dietary polysaccharides (starch) and disaccharides (sucrose and galactose). Biosynthesis of glycogen, starch and sucrose.
2. Citric acid (TCA) cycle: conversion of pyruvate to acetyl CoA, pyruvate dehydrogenase, a multi-enzyme complex; detailed description of citric acid cycle; bioenergetics and conservation of energy produced in the cycle. Anabolic or biosynthetic role of citric acid cycle intermediates; replenishing or anaplerotic reactions and their role; regulation of citric acid cycle.
3. Electron Transport and Oxidative phosphorylation
Components of electron transport chain. Role and structure of ATP-synthase. Oxidative phosphorylation. Substrate level phosphorylation. The glycerol phosphate shuttle mechanism and malate-aspartate shuttle system.
4. Lipid metabolism: oxidation of fatty acids; digestion, mobilization and transport of fats; biosynthesis of triacylglycerol; activation of fatty acids and their transportation to mitochondria; betaoxidation; bioenergetics of beta-oxidation; omega oxidation pathway; biosynthesis of saturated fatty acid, supply of raw material for palmitic acid synthesis; fatty acid synthetase (FAS) multienzyme complex. Ketone bodies their biosynthesis, utilization and role in the tissues; cholesterol metabolism: cholesterol biosynthesis and its regulation; steroid hormones.
5. Nitrogen metabolism: metabolic fate of amino acids; catabolism of amino acids; deamination and transamination; nitrogen excretion and urea cycle; regulation of urea cycle; Biosynthesis of any one amino acid from the family; incorporation of ammonia in glutamate and glutamine; purine and pyrimidine: basic synthesis reactions only.
Course Learning Outcomes
The course will provide in-depth knowledge about the polymerized organic compounds of life. The dynamism of the life proceeds with interconversion of the chemicals from feeding to the liberation of energy for work. It will deal with the inter-conversion is performed by various tools called as enzymes. Thus, in this course the concepts of the chemical basis of life and all the mechanisms involved in harvesting of energy for growth, duplication etc.,
Gluconeogenesis, its regulation and significance in the tissues
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Citric acid (TCA) cycle: Anabolic or biosynthetic role of citric acid cycle intermediates
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Citric acid (TCA) cycle: Replenishing or anaplerotic reactions and their role; regulation of citric acid cycle
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detailed description of glycolysis
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Catabolism of any other hexose; regulation and bioenergetics of glycolysis.
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Catabolism of any other hexose; regulation and bioenergetics of glycolysis.
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Gluconeogenesis, its regulation and significance in the tissues
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Anabolic role of glycolysis; fate of pyruvate under aerobic and anaerobic conditions, lactate, acetyl CoA and ethanol formation; alcoholic fermentation.
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utilization of other carbohydrates in glycolysis; phosphorolysis of glycogen and starch; regulation of glycogen metabolism.
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Utilization of dietary polysaccharides (starch) and disaccharides (sucrose and galactose). Biosynthesis of glycogen, starch and sucrose
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Citric acid (TCA) cycle: conversion of pyruvate to acetyl CoA, pyruvate dehydrogenase, a multi-enzyme complex.
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Citric acid (TCA) cycle: detailed description of citric acid cycle;
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Citric acid (TCA) cycle: bioenergetics and conservation of energy produced in the cycle
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Lipid metabolism: oxidation of fatty acids; digestion, mobilization and transport of fats
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Lipid metabolism: biosynthesis of triacylglycerol; activation of fatty acids and their transportation to mitochondria
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Lipid metabolism: beta oxidation; bioenergetics of beta-oxidation; omega oxidation pathway.
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Lipid metabolism: biosynthesis of saturated fatty acid, supply of raw material for palmitic acid synthesis;
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Lipid metabolism: fatty acid synthetase (FAS) multienzyme complex. Ketone bodies their biosynthesis, utilization and role in the tissues.
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Lipid metabolism: Cholesterol metabolism: cholesterol biosynthesis and its regulation; steroid hormones.
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Nitrogen metabolism: metabolic fate of amino acids;
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Nitrogen metabolism: catabolism of amino acids; deamination and transamination;
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Nitrogen metabolism: nitrogen excretion and urea cycle; regulation of urea cycle;
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Nitrogen metabolism: Biosynthesis of any one amino acid from the family; incorporation of ammonia in glutamate and glutamine.
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Nitrogen metabolism: purine and pyrimidine: basic synthesis reactions only
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Anabolic role of glycolysis; fate of pyruvate under aerobic and anaerobic conditions, lactate, acetyl CoA and ethanol formation; alcoholic fermentation.
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Book Title : Harper Illustrated Biochemistry
Author : Murray, R.K., Granner, D.K., Mayer, P.A. and Rodwells, V.W.,
Edition : 28th
Publisher :
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Title : detailed description of glycolysis
Type : Presentation
View detailed description of glycolysis
Title : Citric acid (TCA) cycle: conversion of pyruvate to acetyl CoA, pyruvate dehydrogenase, a multi-enzyme complex.
Type : Presentation
View Citric acid (TCA) cycle: conversion of pyruvate to acetyl CoA, pyruvate dehydrogenase, a multi-enzyme complex.
Title : Anabolic role of glycolysis; fate of pyruvate under aerobic and anaerobic conditions, lactate, acetyl CoA and ethanol formation; alcoholic fermentation.
Type : Reference Book
View Anabolic role of glycolysis; fate of pyruvate under aerobic and anaerobic conditions, lactate, acetyl CoA and ethanol formation; alcoholic fermentation.
Title : Gluconeogenesis, its regulation and significance in the tissues
Type : Presentation
View Gluconeogenesis, its regulation and significance in the tissues
Title : Nitrogen metabolism: nitrogen excretion and urea cycle; regulation of urea cycle;
Type : Presentation
View Nitrogen metabolism: nitrogen excretion and urea cycle; regulation of urea cycle;
Title : Nitrogen metabolism: Biosynthesis of any one amino acid from the family; incorporation of ammonia in glutamate and glutamine.
Type : Presentation
View Nitrogen metabolism: Biosynthesis of any one amino acid from the family; incorporation of ammonia in glutamate and glutamine.
Title : Metabolism: Catabolism of any other hexose; regulation and bioenergetics of glycolysis.
Type : Presentation
View Metabolism: Catabolism of any other hexose; regulation and bioenergetics of glycolysis.
Title : Metabolism: Anabolic role of glycolysis; fate of pyruvate under aerobic and anaerobic conditions, lactate, acetyl CoA and ethanol formation; alcoholic fermentation
Type : Presentation
View Metabolism: Anabolic role of glycolysis; fate of pyruvate under aerobic and anaerobic conditions, lactate, acetyl CoA and ethanol formation; alcoholic fermentation