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Lecture
Cytoskeleton: Actin Filaments and Microtubules
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Microtubules: Structure and Regulation
Explores the structure and regulation of microtubules, emphasizing dynamic polymers, GTP hydrolysis, nucleation, catastrophe, and accessory proteins.
Protein Polymers: Biophysics Insights
Delves into protein polymers, discussing co-evolution, diffusion, protein structures, and experimental methods.
Microtubules: Structure, Function, and Regulation
Explores the structure, function, and regulation of microtubules, including forces involved in dynamics and pronuclear migration.
Cytoskeleton and Tensegrity
Explores the structure and functions of the cytoskeleton components for cell support and movement.
The Cytoskeleton
Explores the structure, functions, and dynamics of the cytoskeleton, focusing on filament properties, growth processes, and mechanical requirements.
Protein self-assembly and phase transitions
Delves into protein self-assembly, phase transitions, and aggregation mechanisms in diseases like Alzheimer's.
Intermediate Filaments and Various Functions
Explores the structure and functions of intermediate filaments in cells, emphasizing their mechanical resistance and diverse roles.
Protein Folding: Chaperone Solutions
Explores chaperones' role in guiding protein folding and preventing misfolding through the functional cycle of Hsp70 and the DnaK chaperone system.
Cytoskeleton: Cellular Organization and Function
Covers the composition and functions of the cytoskeleton within cells.
Cellular Cytoskeleton Components
Explores cellular cytoskeleton components, including actin filaments and microtubules, and discusses solvent-free molecular dynamics and Monte Carlo simulations.