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Related lectures (26)
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Genetic Material: DNA Structure and Replication
Explores the discovery of DNA as the genetic material, the genetic code, DNA structure, replication process, and key concepts in molecular biology.
Polymer Biophysics: Basic Rules and Modeling
Covers the basics of polymer biophysics, including DNA conformation modeling and the Boltzmann principle, emphasizing the exponential decay of correlations between segments.
Chemistry of Amino Acids
Covers the organization of the course, protein structure, molecular interactions, and the significance of pH and functional groups.
Genetic Code Expansion: Tools and Techniques
Explores mRNA translation, translational blockers, genetic code expansion, and protein labeling techniques.
Genome Duplication: Mechanisms and Models
Explores genome duplication mechanisms, DNA replication models, and experimental evidence supporting Watson and Crick's semiconservative model.
Proteins: Structure, Function, and Mechanisms
Explores the structure, function, and mechanisms of proteins, enzymes, motor proteins, transport proteins, and ion channels in cellular processes.
Telomeres and Cancer
Explores telomeres' crucial role in cancer biology, covering telomerase, replication problems, ALT pathway, and TERRA functions.
Biopolymers: Solid Mechanics and DNA Conformations
Explores solid mechanics of beam deformations and DNA modeling.
DNA as Biomaterial Lecture: Programming with DNA Origami
Explores DNA fundamentals, nano-engineering, and bioengineering applications, focusing on programmable biomaterials and DNA origami structures.
Genomic Data Analysis: Molecular Biology Fundamentals
Covers molecular biology fundamentals for genomic data analysis, including DNA structure, genes, proteins, RNA, and PCR.