MIT 5.08J Biological Chemistry II, Spring 2016
4.0
(5)
36 learners
What you'll learn
This course includes
- 42 hours of video
- Certificate of completion
- Access on mobile and TV
Course content
1 modules • 49 lessons • 42 hours of video
MIT 5.08J Biological Chemistry II, Spring 2016
49 lessons
• 42 hours
MIT 5.08J Biological Chemistry II, Spring 2016
49 lessons
• 42 hours
- 1. Introduction to Biological Chemistry II 35:57
- 2. Protein Synthesis 1 50:49
- R1. Determining, Analyzing, and Understanding Protein Structures 29:11
- 3. Protein Synthesis 2 50:03
- 4. Protein Synthesis 3 51:34
- 5. Protein Synthesis 4 51:13
- R2. Pre-Steady State and Steady-State Kinetic Methods Applied to Translation 53:57
- 6. Protein Synthesis 5 52:16
- 7. Protein Synthesis 6 50:04
- 8. Protein Folding 1 51:48
- R3. Pre-Steady State and Steady-State Kinetic Methods Applied to Translation 55:28
- 9. Protein Folding 2 52:23
- 10. Protein Folding 3 46:14
- 11. Protein Folding 4 51:21
- R4. Purification of Native and Mutant Ribosomes, Protein Purification 59:26
- 12. Protein Degradation 1 51:11
- 13. Protein Degradation 2 51:04
- 14. Protein Degradation 3 48:43
- R5. Overview of Cross-Linking, Including Photo-Reactive Cross-Linking Methods 50:42
- 15. PK and NRP Synthases 1 50:01
- 16. PK and NRP Synthases 2 55:47
- R6. Macromolecular Electron Microscopy Applied to Fatty Acid Synthase 01:00:31
- 17. PK and NRP Synthases 3 51:25
- 18. PK and NRP Synthases 4 54:04
- R7. Application of Single Molecule Methods 53:58
- 19. Cholesterol Biosynthesis 1 51:28
- 20. Cholesterol Biosynthesis 2 51:19
- 21. Cholesterol Biosynthesis 3 & Cholesterol Homeostasis 1 53:40
- R8. Application of CRISPR to Study Cholesterol Regulation 54:14
- 22. Cholesterol Homeostasis 2 49:29
- 23. Cholesterol Homeostasis 3 53:20
- 24. Cholesterol Homeostasis 4 49:30
- R9. Cholesterol Homeostasis and Sensing 54:23
- 25. Cholesterol Homeostasis 5 & Metal Ion Homeostasis 1 53:09
- 26. Metal Ion Homeostasis 2 51:44
- 27. Metal Ion Homeostasis 3 52:22
- R10. Metal-Binding Studies and Dissociation Constant Determination 59:59
- 28. Metal Ion Homeostasis 4 51:56
- 29. Metal Ion Homeostasis 5 52:15
- R11. Mass Spectrometry 54:17
- 30. Metal Ion Homeostasis 6 52:37
- 31. Metal Ion Homeostasis 7 & Reactive Oxygen Species 1 52:04
- R12. Mass Spectrometry of the Cysteine Proteome 53:50
- 32. Reactive Oxygen Species 2 49:25
- 33. Reactive Oxygen Species 3 54:17
- 34. Reactive Oxygen Species 4 & Nucleotide Metabolism 1 49:24
- R13. Fluorescence Methods 53:36
- 35. Nucleotide Metabolism 2 48:24
- 36. Nucleotide Metabolism 3 50:57
