Fundamentals of Molecular Biology. Part 1: Cell Molecular Biology - A. N. Ogurtsov 2011



Introduction

Molecular Biology. Subject Matter and Core Sections of the Course

Diversity and Universality of Cells

Biomacromolecules

Molecular Biology. Subject Matter and Main Sections of the Course

Cell Functioning

Molecular Biology. Subject Matter and Core Sections of the Course

Study of Cells and Cellular Structures

Molecular Biology. Subject and Main Sections of the Course

Contents of the Main Sections of the Course

Fundamentals of Cell Theory

Cell Theory

Two Types of Cellular Organization

Components and Contents of the Escherichia coli Cell

Cellular Organization

Cell Structure

Mitochondria and Plastids

Cytoskeleton

Intracellular Transport

The Vacuolar System of the Cell

Intracellular Transport of Substances

Three Main Mechanisms of Intracellular Transport

Transport of substances within the cell

Protein synthesis in the rough endoplasmic reticulum

Intracellular Transport of Substances

Vacuolar Transport

Intracellular Transport

Transmembrane Translocation

Membrane Trafficking in the Cell

Components of Biomolecular Complexes

Elemental Composition of Living Organisms

Chemical Bonding and Intermolecular Interactions

Carbohydrates

Lipids and Biomembranes

Nucleic Acids and Proteins

Nucleotides

Nucleic Acids

Eukaryotic DNA Packaging

Proteins. Classification of Amino Acids

Hierarchy of Protein Structures

Protein Functions

Combinatorial Nature of Molecular Diversity

Molecular Principles of Protein Function

Molecular Basis of Protein Function

Secondary Structure Repeats

Molecular Principles of Protein Function

Protein Domains

Molecular Foundations of Protein Function

Protein Assemblies

Molecular Principles of Protein Function

Protein Families

Molecular Foundations of Protein Function

Protein Folding, Modification, and Degradation

Molecular basis of protein function

Molecular recognition

Molecular Basis of Protein Function

Molecular Motors

Molecular Foundations of Protein Function

Mechanisms of Protein Function Regulation

Oxidation of Glucose and Fatty Acids

Chemiosmotic Coupling

Endosymbiotic Hypothesis

Transport of Substances Across the Biomembrane

Oxidation of glucose and fatty acids

Glycolysis

Glucose and Fatty Acid Oxidation

Anaerobic Metabolism

Oxidation of Glucose and Fatty Acids

Aerobic Oxidation in Mitochondria

Citric Acid Cycle

Oxidation of glucose and fatty acids

Electron transfer from the cytosol to the mitochondrion

Glucose and Fatty Acid Oxidation

Fatty Acid Oxidation

Generation of Proton-Motive Force and ATP Synthesis

Electron Transport Chain

Proton-motive force generation and ATP synthesis

Electron transport along the respiratory chain

Generation of the proton-motive force and ATP synthesis

Components of the respiratory chain

Generation of Proton-Motive Force and ATP Synthesis

Oxidative Phosphorylation

Generation of the proton-motive force and ATP synthesis

Transport of ATP and ADP across the inner mitochondrial membrane

Photosynthetic Systems

Stages of Photosynthesis

Photosystems

Charge Separation in the Photosystem Reaction Center

Light-Harvesting Complexes

Molecular mechanisms of photosynthesis

Photosystem of purple bacteria

Two photosystems in plant chloroplasts

Molecular Mechanisms of Photosynthesis

Linear electron transport chain in oxygenic photosynthetic organisms

Molecular mechanisms of photosynthesis

Water-splitting complex of photosystem PSII

Cyclic electron transport chain

Regulation of the relative activity of photosystems PS1 and PS2

Photosynthetic Carbon Fixation

The Calvin Cycle in the Chloroplast Stroma

Sucrose Synthesis in the Chloroplast Cytosol

Regulation of Carbon Fixation

Competition between Photorespiration and Photosynthesis

References