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Nucleic Acids
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Module 1: Lesson 1: Amino Acids found in Proteins and Acid-Base Chemistry of Amino Acids
Amino Acid
Module 1: Lesson 2: Peptide Bond Formation and Hydrolysis
Peptides and Proteins
Module 1: Lesson 3: Protein Structure
Proteins
Module 1: Lesson 4: Denaturation
Denaturation of Proteins
Module 2: Lesson 1: Enzyme Classifications
Classes of Enzymes
Module 2: Lesson 2: The Central Role of Enzymes as Biological Catalysts
The Central Role of Enzymes as Biological Catalysts
Module 2: Lesson 3: Enzyme Kinetics
Allosteric Interactions
CHEM 440 - Enzyme Kinetics
Module 3: Lesson 1: Cellular Function
Nonenzymatic Protein Function for the MCAT: Everything you Need to Know
Module 3: Lesson 2: Biosignaling
Biochemistry 1: Biosignaling
Module 3: Lesson 3: Protein Analysis Techniques
Protein Analysis Techniques Explained
Module 4: Carbohydrates
Module 4: Lesson 1: Classification of Carbohydrates
Carbohydrate Chemistry and Classification
Module 4: Lesson 2: Cyclic Carbohydrates
Cyclic Form of Carbohydrates
Module 4: Lesson 3: Monosaccharides
Chapter 22: Carbohydrates
Module 4: Lesson 4: Disaccharides
Disaccharides
Reflection Activity: Health Applications of Biochemistry (90 minutes)
Module 5: Lesson 1: Glucose Transport
Glucose Transporters: Physiological and Pathological Roles
Module 5: Lesson 2: Glycolysis
Biochemistry, Glycolysis
Module 5: Lesson 3: Metabolism of Fructose and Galactose
Fructose and Galactose Breakdown Pathways
Module 5: Lesson 4: Pyruvate Dehydrogenase
Pyruvate Dehydrogenase (PDH)
Module 5: Lesson 5: Glycogenesis and Glycogenolysis
Glycogenesis and Glycogenolysis
Module 5: Lesson 6: Gluconeogenesis
Biochemistry, Gluconeogenesis
Module 5: Lesson 7: Pentose Phosphate Pathway
Pentose Phosphate Pathway
Case Scenario: Pathophysiology of Carbohydrate Metabolic Disorders (150 minutes)
Module 6: Lesson 1: Lipid Classes
Lipid types and structures
Module 6: Lesson 2: Signaling Lipids
Lipids
Module 6: Lesson 3: Lipid Storage
Adipose Tissue
Module 6: Lesson 4: Saponification
Saponification
Module 7: Lesson 1: Lipid Digestion and Absorption
Digestion and Absorption of Lipids
Module 7: Lesson 2: Lipid Mobilization
Mobilization of Fatty Acids
Module 7: Lesson 3: Lipid Transport
Lipid Transport
Module 7: Lesson 4: Cholesterol Metabolism
Cholesterol Metabolism
Module 7: Lesson 5: Fatty Acids and Triglycerols Metabolism
Metabolism (Degradation) of Triglycerols and Fatty Acids
Module 7: Lesson 6: Ketone Bodies
Metabolism (Degradation) of Triglycerols and Fatty Acids
Module 7: Lesson 7: Protein Catabolism
Biochemistry: Protein Catabolism
Case Scenario: Pathophysiology of Lipid and Amino Acid Metabolic Disorders (120 minutes)
Module 8: Lesson 1: DNA Structure
Nucleic Acids
Module 8: Lesson 2: Organization of Chromosomes in Eukaryotes
Organization of Eukaryotic Chromosomes
Module 8: Lesson 3: DNA Replication
DNA Replication Steps and Process
Module 8: Lesson 4: DNA Repair
Mechanisms of DNA Repair
Module 8: Lesson 5: Recombinant DNA Technology
Recombinant DNA
Peer Activity: Applications of DNA Technology (120 minutes)
Module 9: Lesson 1: Nucleic Acids
Nucleic Acids
Structure and Replication of DNA
Module 9: Lesson 2: Transcription Factors and the Preinitiation Complex (PIC)
Transcription and RNA Processing
Module 9: Lesson 3: Translation
Translation
Module 9: Lesson 4: Prokaryotic Gene Regulation
Transcriptional Control and Epigenesis
Module 9: Lesson 5: Eukaryotic Gene Regulation
Eukaryotic Gene Regulation
Peer Activity: Applications of RNA Technology (120 minutes)
Module 10: Lesson 1: Fluid Mosaic Model
Fluid Mosaic Model
Module 10: Lesson 2: Membrane Components
Components and Structure
Module 10: Lesson 3: Membrane Transport
Membrane Transport
Module 10: Lesson 4: Specialized Membranes
Membrane Potential
Module 11: Lesson 1: Acetyl CoA
Acetyl CoA Production
Module 11: Lesson 2: Citric Acid Cycle
The Citric Acid Cycle
Module 11: Lesson 3: Electron Transport Chain
Electron Transport Chain
Module 11: Lesson 4: Oxidative Phosphorylation
Oxidative Phosphorylation
Module 12: Lesson 1: Thermodynamics and Bioenergetics
Bioenergetics/Thermodynamics
Module 12: Lesson 2: Adenosine Triphosphate
Adenosine Triphosphate
Module 12: Lesson 3: Biological Oxidation and Reduction
Biological Oxidation-Reduction (BC/GC)
Module 12: Lesson 4: Metabolic States
Metabolic States of the Body
Module 12: Lesson 5: Hormonal Regulation of Metabolism
Hormonal Regulation of Fuel Metabolism
Module 12: Lesson 6: Tissue-Specific Metabolism
Tissue-Specific Metabolism
Module 12: Lesson 7: Integrative Metabolism
Metabolism, and Energy Balance
Reflection: Energy Production by the Human Body (150 minutes)
Final Exam
Course and Self Evaluation & Certificate
Learning activities
Activities.
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Module 9: Lesson 1: Nucleic Acids
Nucleic Acids
Nucleic Acids
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Course Registration
Pre-Test
Peer Corner
Amino Acid
Peptides and Proteins
Proteins
Denaturation of Proteins
Classes of Enzymes
The Central Role of Enzymes as Biological Catalysts
Allosteric Interactions
CHEM 440 - Enzyme Kinetics
Nonenzymatic Protein Function for the MCAT: Everything you Need to Know
Biochemistry 1: Biosignaling
Protein Analysis Techniques Explained
Carbohydrate Chemistry and Classification
Cyclic Form of Carbohydrates
Chapter 22: Carbohydrates
Disaccharides
Reflection Activity: Health Applications of Biochemistry (90 minutes)
Glucose Transporters: Physiological and Pathological Roles
Biochemistry, Glycolysis
Fructose and Galactose Breakdown Pathways
Pyruvate Dehydrogenase (PDH)
Glycogenesis and Glycogenolysis
Biochemistry, Gluconeogenesis
Pentose Phosphate Pathway
Case Scenario: Pathophysiology of Carbohydrate Metabolic Disorders (150 minutes)
Lipid types and structures
Lipids
Adipose Tissue
Saponification
Digestion and Absorption of Lipids
Mobilization of Fatty Acids
Lipid Transport
Cholesterol Metabolism
Metabolism (Degradation) of Triglycerols and Fatty Acids
Metabolism (Degradation) of Triglycerols and Fatty Acids
Biochemistry: Protein Catabolism
Case Scenario: Pathophysiology of Lipid and Amino Acid Metabolic Disorders (120 minutes)
Nucleic Acids
Organization of Eukaryotic Chromosomes
DNA Replication Steps and Process
Mechanisms of DNA Repair
Recombinant DNA
Peer Activity: Applications of DNA Technology (120 minutes)
Structure and Replication of DNA
Transcription and RNA Processing
Translation
Transcriptional Control and Epigenesis
Eukaryotic Gene Regulation
Peer Activity: Applications of RNA Technology (120 minutes)
Fluid Mosaic Model
Components and Structure
Membrane Transport
Membrane Potential
Acetyl CoA Production
The Citric Acid Cycle
Electron Transport Chain
Oxidative Phosphorylation
Bioenergetics/Thermodynamics
Adenosine Triphosphate
Biological Oxidation-Reduction (BC/GC)
Metabolic States of the Body
Hormonal Regulation of Fuel Metabolism
Tissue-Specific Metabolism
Metabolism, and Energy Balance
Reflection: Energy Production by the Human Body (150 minutes)
Activities.
Next Activity