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Nucleotide excision repair
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Related lectures (31)
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Improving Repair Process Efficiency
Focuses on improving repair process efficiency for BE engines through observation and interviews.
RNA Polymerases and DNA Repair Mechanisms
Explores RNA polymerases, ATP production, DNA repair, and UV light effects on DNA.
Retinoblastoma: Genetic Mechanisms and Clinical Implications
Explores the genetic mechanisms of retinoblastoma and their clinical implications, shedding light on tumor suppression, DNA repair, and genetic recombination.
Telomere damage response
Discusses the telomere damage response and the interplay between ATM and ATR kinases.
BRCA2 Mutations: Mechanisms and Implications
Explores BRCA2 mutations, DNA repair mechanisms, and therapeutic implications for BRCA mutant cancers.
Mutations and Cancer: The Role of P53 and HPV
Covers mutations, the role of P53 in cancer, and HPV's impact on tumorigenesis.
Telomeres and Cancer
Explores telomeres' role in cancer biology, covering telomerase, replication problems, ALT pathway, and Nobel Prize-winning discoveries.
DNA Damage Checkpoint
Explores the DNA damage checkpoint, cell cycle regulation, repair mechanisms, and key proteins involved.
Cancer Biology: Hallmarks and Mechanisms
Covers the hallmarks of cancer, oncogenes, DNA repair, telomeres, viruses, cell cycle, stem cells, metastasis, and genetic instability.
Chemical Biology Toolsets: Fundamentals and Applications
Explores fundamental chemical biology tools, nucleosides, nucleotides, RNA/DNA probing, and DNA replication dynamics.
Genetic Suppression: Synthetic Lethality
Explores synthetic lethality in genetics, focusing on cancer implications and therapeutic insights through genetic interactions.
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