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N SINGLE CHAIN AMPHIPHILES   MICELLE

LIPID STRUCTURE A: INTERMOLECULAR AGGREGATES MICELLE FORMATION THROUGH INTERMOLECULAR FORCES. LIPID STRUCTURE: FORM COMPLEX STRUCTURES FROM SIMPLE MOLECULE. N SINGLE CHAIN AMPHIPHILES   MICELLE. LIPID STRUCTURE B: INTERMOLECULAR AGGREGATES BILAYER FORMATION THROUGH INTERMOLECULAR FORCES.

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N SINGLE CHAIN AMPHIPHILES   MICELLE

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  1. LIPID STRUCTURE A: INTERMOLECULAR AGGREGATESMICELLE FORMATION THROUGH INTERMOLECULAR FORCES • LIPID STRUCTURE: FORM COMPLEX STRUCTURES FROM SIMPLE MOLECULE N SINGLE CHAIN AMPHIPHILES   MICELLE

  2. LIPID STRUCTURE B: INTERMOLECULAR AGGREGATESBILAYER FORMATION THROUGH INTERMOLECULAR FORCES N DOUBLE CHAIN AMPHIPHILES   BILAYER

  3. PROTEIN STRUCTURE: INTRAMOLECULAR FOLDING PROTEIN FOLDING UNFOLDED POLYPEPTIDE CHAIN   FOLDED PROTEIN Shortpeptide Long protein

  4. MACROMOLECULE STRUCTURE: DNA AND CHO CHO DNA

  5. MACROMOLECULE FUNCTION: BINDING M + L  ML Ligand binding Ligand release Protein DNA DNA/Protein Complex

  6. MACROMOLECULE FUNCTION:BINDING AND TRANSPORT (PHYSICAL STEP) FACILITATED DIFFUSION R + Lout RL  R + Lin Lout Ligand binding receptor receptor Ligand release Lin

  7. MACROMOLECULE FUNCTION BINDING AND KINETICS (CHEMICAL STEP) ENZYME KINETICS E + S  ES  E + P Substrate binding Product release

  8. MACROMOLEUCLE FUNCTION: BINDING AND CHEMICAL TRANSFORMATION

  9. MACROMOLEUCLE FUNCTION: BINDING AND CATALYSISSIGNAL TRANSDUCTION M + L  ML R + Lout RL  R + Lin E + S  ES  E + P hormone adenylate cyclase receptor out in bg bg a a a GDP GTP GDP GTP cAMP ATP Ga Adenylate cyclase (cat. Domain) PKAin PKAact phosphorylates proteins

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