Related lectures (34)
Neuroepigenetics: Chromatin Structure & Inheritance
Delves into neuroepigenetics, covering chromatin structure, histone modifications, DNA methylation, and their impact on gene transcription and inheritance.
Genomics: Chromatin Structure and Regulatory Elements
Covers chromatin structure, histone assembly, and regulatory elements in gene expression.
DNA Structure and Function
Explores DNA structure, histone interactions, polymerase function, nucleosome organization, chromatin compaction, cell cycle phases, FISH analysis, and telomere structure.
Epigenetics: Chromatin Structure and Nucleosome Dynamics
Explores epigenetics, chromatin structure, nucleosome dynamics, and post-translational modifications of histones.
Self-attraction of DNA: Mediated Interactions
Discusses the self-attraction of DNA and its mediated interactions.
Epigenetics: Histone Modifications
Delves into histone modifications, chromatin structure, and DNA methylation's role in gene regulation and heritability.
Chromatin Structure and Compaction
Explores chromatin structure, nucleosomes, and chromatin compaction levels observed through transmission electron microscopy.
DNA Damage Checkpoint
Explores the DNA damage checkpoint, cell cycle regulation, repair mechanisms, and key proteins involved.
Protein Folding Dynamics
Explores protein folding dynamics, chaperones, ATP hydrolysis, and DNA folding intricacies within the nucleus.
Genomics: Chromatin Structure and Organization
Explores chromatin structure, DNA compaction, and regulatory networks in genomics.

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