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Lecture
Understanding Cancer Genetics
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Related lectures (31)
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DNA Damage Response and Tumor Suppressor Genes
Delves into DNA damage response, tumor suppressor genes, and mutant P53 in cancer.
Sustained Proliferation: RTK/PI3K/mTOR Pathway in Cancer
Explores the RTK/PI3K/mTOR pathway in cancer, inhibitors, completed trials, and effects of Akt/PKB on survival and proliferation.
Altered Metabolism in Cancer: Warburg Effect and MYC Regulation
Explores altered cancer metabolism, MYC regulation, Rb and p53 pathways, AKT re-activation, and protein-protein interactions.
Hallmarks of Cancer: Complexity and Capabilities
Explores the complexity and fundamental capabilities of cancer, focusing on hallmarks like sustained proliferative signaling and evading growth suppressors.
Genetic Mutations: Causes and Effects
Explores genetic mutations, chromosomal abnormalities, DNA repair, and disease implications.
Human Tumor Suppressor Genes
Explores human tumor suppressor genes and genetic predisposition to cancer, using retinoblastoma as a model for tumor formation.
Genetic Instability: De Palma
Explores genetic instability in cancer, multi-step progression, repair mechanisms, and cancer stem cells.
DNA Repair Mechanisms
Explores DNA repair mechanisms, DNA damage response, and synthetic lethality in cancer.
Cancer Biology: Base Excision Repair
Covers cancer biology topics on base excision repair, cellular responses to DNA damage, p53 regulation, and apoptosis mechanisms.
Metabolic Signaling: Challenges & Future Directions
Explores metabolic signaling, the Warburg effect, and pathway rewiring in proliferating cells.