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Lecture
Microtubules: Regulation and Functions
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Molecular Motors: Rotary Mechanisms
Explores the coordination and mechanisms of molecular motors, including rotary motors, ATP-synthase, and polymerization forces.
Microtubules: Structure, Function, and Regulation
Explores the structure, function, and regulation of microtubules, including forces involved in dynamics and pronuclear migration.
Cellular Transport: Directed Motion
Explores different types of directed motion in cellular systems, emphasizing the role of motor proteins in transporting biomolecules.
Microtubules: Structure and Regulation
Explores the structure and regulation of microtubules, emphasizing dynamic polymers, GTP hydrolysis, nucleation, catastrophe, and accessory proteins.
Cell Division and Organelle Staining
Covers cell division phases, organelle staining, and immune cell interactions.
Cellular Biology: Mitosis and Meiosis Overview
Covers cellular biology, focusing on mitosis, meiosis, and the cell cycle processes.
Cytoskeleton and Tensegrity
Explores the structure and functions of the cytoskeleton components for cell support and movement.
Cytoskeleton: Actin Filaments and Microtubules
Explores actin filaments, microtubules, monomers, proteins, dimer formation, and protein aggregation in the cytoskeleton.
Vesicular Transport Mechanisms
Explores vesicular transport mechanisms, focusing on fission, recognition, and fusion processes involving proteins like dynamin and SNAREs.
Molecular Motors: Structure and Function
Explores the structure and function of molecular motors, comparing biological and man-made motors, and discussing their dynamics and movement.