{"id":6478,"date":"2021-08-01T14:37:11","date_gmt":"2021-08-01T21:37:11","guid":{"rendered":"https:\/\/wou.edu\/chemistry\/?page_id=6478"},"modified":"2021-08-01T18:30:40","modified_gmt":"2021-08-02T01:30:40","slug":"ch450-biochemistry-i-student-and-teacher-resources","status":"publish","type":"page","link":"https:\/\/wou.edu\/chemistry\/courses\/online-chemistry-textbooks\/ch450-and-ch451-biochemistry-defining-life-at-the-molecular-level\/ch450-biochemistry-i-student-and-teacher-resources\/","title":{"rendered":"CH450 Biochemistry I \u2013 Student and Teacher Resources"},"content":{"rendered":"
This course is designed for upper division undergraduate students that are interested in learning about how life works. It is highly recommended for students that are interested in pursuing a graduate or professional degree in the medical sciences. The course is designed in two installments:\u00a0 Biochemistry I offered in the fall term, and Biochemistry II offered in the winter term. The focus of Biochemistry II is on carbohydrate and lipid metabolism, as well as the processes of cellular energy production and utilization.\u00a0 Within these process, we will engage in the detailed exploration of biological macromolecule structure and function with emphasis on the mechanisms of protein\/ligand binding, metabolic pathways and regulatory enzyme mechanisms. By the end of the second quarter, you should be able to:<\/span><\/p>\n Background Reading Sources:<\/span><\/strong><\/p>\n Lecture 1.1 – Cellular Foundations<\/a>; Lecture 1.1: Cellular Foundations PDF with Notes<\/a>; Youtube Lecture 1.1<\/a><\/p>\n Lecture 1.2 – Physical Foundations<\/a>; Lecture 1.2 PDF with Notes<\/a>; Youtube Lecture 1.2<\/a><\/p>\n Lecture 1.3 Chemical Foundations<\/a>; Lecture 1.3 PDF with Notes<\/a>; Youtube Lecture 1.3<\/a><\/p>\n Lecture 1.4 genetics and evolution<\/a>; Chapter 1.4 PDF with Notes<\/a>; Youtube Lecture 1.4<\/a><\/p>\n Chapter 2 Powerpoint Slides<\/a><\/a>; Chapter 2 PDF with Notes<\/a><\/p>\n Youtube Lecture 2.1 Amino Acid Structure and Properties<\/a><\/p>\n Youtube Lecture 2.2 Peptide Bond Formation and Primary Structure<\/a><\/p>\n Youtube Lecture 2.3 Secondary Protein Structure<\/a><\/p>\n Youtube Lecture 2.4 Supersecondary Protein Structure<\/a><\/p>\n Youtube Lecture 2.5 Tertiary and Quaternary Protein Structure<\/a><\/p>\n Youtube Lecture 2.6 Protein Folding, Denaturation and Hydrolysis<\/a><\/p>\n Chapter 3 Powerpoint Slides<\/a>; Chapter 3 Slides PDF with Notes<\/a><\/p>\n Youtube Lecture 3.1 Protein Purification<\/a><\/p>\n Youtube Lecture 3.2 part 1: Protein Identification and Visualization<\/a><\/p>\n Youtube Lecture 3.2 part 2: Protein Identification and Visualization<\/a><\/p>\n Youtube Lecture 3.3 Protein Synthesis and Sequencing<\/a><\/p>\n Youtube Lecture 3.4 Protein Structure Elucidation<\/a><\/p>\n Chapter 4 Powerpoint Slides<\/a>; Chapter 4 Slides PDF with Notes<\/a><\/p>\n Youtube Lecture 4.1 DNA and RNA Structure<\/a><\/p>\n Youtube Lecture 4.2 Chromosomes and Packaging<\/a><\/p>\n Youtube Lecture 4.3 Sequencing the Human Genome<\/a><\/p>\n Chapter 5.1 Powerpoint Slides<\/a>; Chapter 5.1 PDF with Notes <\/a><\/p>\n Chapter 5 Powerpoint Slides Sections 5.2 – 5.5<\/a>;Lecture 5.2 to 5.5 PDF with Notes<\/a><\/p>\n Youtube Lecture 5.1.1 DNA and RNA Isolation and Purification<\/a><\/p>\n Youtube Lecture 5.1.2 DNA Sequencing Techniques<\/a><\/p>\n Youtube\u00a0 Lecture 5.1.3 DNA Synthesis Techniques<\/a><\/p>\n Youtube Lecture 5.2 and 5.3 Bioinformatics and DNA Cloning<\/a><\/p>\n Youtube Lecture 5.3 to 5.5 CRISPR\/Cas Technologies, DNA Microarrays, and In Situ Hybridization<\/a><\/p>\n Chapter 6.1 to 6.4 Powerpoint Slides<\/a>; Lecture 6.1 to 6.4 PDF with Notes<\/a><\/p>\n Chapter 6.5 to 6.10 Powerpoint Slides<\/a>; Lecture 6.5 – 6.8 PDF with Notes<\/a><\/p>\n Youtube Lecture 6.1 to 6.2 Enzyme Nomenclature and Classification<\/a><\/p>\n Youtube Lecture 6.3 to 6.4 Enzyme Substrate Binding and Reaction Equilibrium<\/a><\/p>\n Youtube Lecture 6.5 Properties and Mechanisms of Enzyme Action<\/a><\/p>\n Youtube Lecture 6.6 and 6.7 pH, Temperature, and Mechanisms of Enzyme Inhibition<\/a><\/p>\n Youtube Lecture 6.8 Allosteric Enzymes<\/a><\/p>\n Chapter 7.1 to 7.3 Chymotrypsin Powerpoint Slides; <\/a>Lecture 7.1 to 7.3 Chymotrypsin PDF with Notes<\/a><\/a><\/p>\n Chapter 7.3 Part 2 Powerpoint Slides<\/a>; Chapter 7.3 Part 2 PDF with Notes<\/a><\/p>\n Youtube Lecture 7.1 Review of Organic Chemistry Concepts<\/a><\/p>\n Youtube Lecture 7.2 and 7.3 Catalytic Mechanisms of Enzymes: Chymotrypsin<\/a><\/p>\n Youtube Lecture 7.3 Proteases and NMP Kinases<\/a><\/p>\n Youtube Lecture 7.3 Restriction Endonucleases<\/a><\/p>\n Youtube Lecture 7.3 RNA Enzymes (Ribozymes)<\/a><\/p>\n Chapter 8.1 to 8.4 Powerpoint Slides<\/a>; Chapter 8.1 to 8.4 PDF with Notes<\/a><\/p>\n Chapter 8.5 Powerpoint Slides<\/a>; Chapter 8.5 PDF with Notes<\/a><\/p>\n Youtube Lecture 8.1 Isozymes<\/a><\/p>\n Youtube Lecture 8.2 Post-Translational Modifications<\/a><\/p>\n Youtube Lectures 8.3 and 8.4 Allosteric Enzymes and Zymogens<\/a><\/p>\n Youtube Lecture 8.5 Intracellular Protein Degradation<\/a><\/p>\n Chapter 9.1 and 9.2 Powerpoint Slides<\/a>; Chapter 9.1 and 9.2 PDF with Notes<\/a><\/p>\n Chapter 9.3 to the end Powerpoint Slides<\/a>; Chapter 9.3 to the end PDF with Notes<\/a><\/p>\n Youtube Lecture Chapter 9.1 DNA Replication is Semiconservative<\/a><\/p>\n Youtube Lecture Chapter 9.2 Part 1: Prokaryotic DNA Replication<\/a><\/p>\n Youtube Lecture Chapter 9.2 Part 2: Prokaryotic DNA Replication<\/a><\/p>\n Youtube Lecture Chapter 9.3 Replication of Extrachromosomal Elements<\/a><\/p>\n Youtube Lecture Chapter 9.4 Eukaryotic DNA Replication Part 1 – The Cell Cycle<\/a><\/p>\n Youtube Lecture Chapter 9.4 Eukartyotic DNA Replication Part 2 – The Major Players<\/a><\/p>\n Youtube Lecture Chapter 9.5 Mitochondrial DNA Replication<\/a><\/p>\n Youtube Lecture Chapter 9.6 Replication of Telomeres<\/a><\/p>\n Chapter 10 Powerpoint Slides<\/a>; Chapter 10 PDF with Notes<\/a><\/p>\n Youtube Lecture Chapter 10.1 Types of RNA<\/a><\/p>\n Youtube Lecture Chapter 10.2 RNA Polymerase Enzymes<\/a><\/p>\n Youtube Lecture Chapter 10.3 Transcription Factors and the Preinitiation Complex<\/a><\/p>\n Youtube Lecture Chapter 10.4 Transcription Elongation and Termination<\/a><\/p>\n Youtube Lecture Chapter 10.5 Processing of RNA<\/a><\/p>\n Chapter 11.1 to 11.3 Powerpoint Slides<\/a>; Chapter 11.1 to 11.3 PDF with Notes<\/a><\/p>\n Youtube Lecture Chapter 11.1 Overview of Translation<\/a><\/p>\n Youtube Lecture Chapter 11.2 Transfer RNA (tRNA)<\/a><\/p>\n\n
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\nChapter 1: The Foundations of Biochemistry<\/span><\/strong><\/h2>\n
\nChapter 2: Protein Structure<\/span><\/strong><\/h2>\n
\nChapter 3: Investigating Proteins<\/strong><\/span><\/h2>\n
\nChapter 4: DNA, RNA and the Human Genome<\/span><\/strong><\/h2>\n
\nChapter 5: Investigating DNA<\/strong><\/span><\/h2>\n
\nChapter 6: Enzyme Principles and Biotechnological Applications<\/strong><\/span><\/h2>\n
\nChapter 7: Catalytic Mechanisms of Enzymes<\/span><\/strong><\/h2>\n
\nChapter 8: Protein Regulation and Degradation<\/strong><\/span><\/h2>\n
\nChapter 9: DNA Replication<\/span><\/strong><\/h2>\n
\nChapter 10: Transcription and RNA Processing<\/span><\/strong><\/h2>\n
\nChapter 11: Translation<\/span><\/strong><\/h2>\n