Digestion of Biomolecules - Indiana University...

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Digestion of Biomolecules Stryer Short course Chapter 14

Transcript of Digestion of Biomolecules - Indiana University...

Page 1: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Digestion of Biomolecules

Stryer Short courseChapter 14

Page 2: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Hydrolysis Reactions

• Proteins amino acids– Proteases, peptidases

• Complex carbohydrates monosaccharides– amylase

• Triacylglycerides fatty acids– lipase

Page 3: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Zymogens

• Proenzymes—inactive precursors• Cannot release digestive enzymes everywhere!

• Pepsinogen  pepsin: autocatalysis at low pH

Page 4: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Pancreatic Zymogens

Page 5: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Mechanism

• Protease activates trypsin

• Trypsin activates other zymogens

Page 6: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Stomach

• Highly acidic, denaturing environment

• Pepsin begins work• Acidic, partially digested food enters intestine– Activates secretin to neutralize adic

– Activates hormone causing release of pancreatic zymogens and bile salts

Page 7: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Stomach acid

• Prilosec: irreversible inhibitor of proton, potassium pump

Error in carbonic anhydrase

Page 8: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Proteins in the Intestine

• Protein digestion continues with proteases in lumen• Transporter proteins essential—basis of some genetic diseases

• Amino acids then sent to liver• Gluten sensitivity

Page 9: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Carbohydrates in the Intestine

• ‐amylase• Limiting dextrins• Maltase, sucrose, lactase, glucosidase, dextrinase all work to digest to monosaccharides

Page 10: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Carbohydrate Transporters

Page 11: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Lipid Digestion

• Complicated by insolubility

• Emulsion form in stomach

• Extra steps of degradation/re‐assembly

• Bile salts– Cholesterol lowering medications

Page 12: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Pancreatic Lipases

• Zymogens• Fatty acids and MAG• Miscelle formation

Page 13: Digestion of Biomolecules - Indiana University Bloomingtoncourses.chem.indiana.edu/c383/documents/Lecturech14.pdf · Chapter 14. Hydrolysis Reactions •Proteins amino acids –Proteases,

Transport to Liver

• Fatty acid binding proteins

• Fatty acid transport proteins

• Smooth enoplasmicreticulum

• chylomycrons