LECTURES:
- Introduction: Cellular Diversity. Biochemical unity of cells. Biomolecules. H2O and weak bonds.
- Basic Bioenergetics: Reaction equilibria, free energy, and nucleotide hydrolysis.
- Acid-Base Chemistry: Polyprotic acids, Henderson-Haselbach equations, buffers.
- Nucleic Acid Biochemistry: DNA and RNA
- Amino Acids: The 20 standard amino acids.
- Introduction to Proteins: Protein purification. Protein Sequencing.
- Secondary and tertiary structure of proteins
- Tertiary and Quaternary structure of proteins
- Protein assemblies: Viruses, Cytoskeletal fibers.
- Ligand binding to proteins: (I): Oxygen binding to myoglobin.
- Ligand binding to proteins: (II): Oxygen binding to hemoglobin.
- Introduction to enzymes: Effects on reaction rates/equilibria, free energy, and activation energy. Acid-base and covalent catalysis.
- Enzyme kinetics I: Enzyme purification and assay. Michaelis Menten Kinetics. Km, Kcat, Vmax, Enzyme efficiency.
- Enzyme kinetics II: Multisubstrate reactions, enzyme inhibitors.
- Mechanism of enzyme action: Chymotrypsin.
- Biochemistry of Motor Proteins (I): Motility Mechanisms. Sliding Filaments. Particle Transport. Rotary Motors
- Biochemistry of Motor Proteins (II): Mechanisms of action of Myosin. Mechanism of action of Kinesin.
- Lipids and Membranes (I): Lipids-Triacylglycerides. Glycerolphospholipids. Sphingolipids. Sterols. Self Assembly of Lipids-Critical Micellar Concentration
- Lipids and Membranes (II): Biological Membranes. Fluid mosaic lipid bilayer. Membrane proteins. Transport across membranes