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Genetic Variability and Diversity: Diseases and Medicine
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Related lectures (31)
Epigenomics: DNA Methylation and Histone Modifications
MOOC: Neuroscience Reconstructed: Genetics and Brain Development
Delves into DNA methylation, histone modifications, epigenetic dysregulation in diseases, and techniques for studying chromatin interactions.
Neuroepigenetics: Molecular Mechanisms and Cognitive Implications
Investigates how maternal behavior shapes stress response through epigenetics and discusses genetic vs. epigenetic influences on traits.
Eukaryotic Transcription: Initiation and Elongation
Explores eukaryotic transcription initiation, elongation, and gene regulation complexity.
Genetic Variability and Disease Consequences
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Explores the impact of mutations on disease development and the importance of genetic variability in medicine.
Genetic Variability & Diversity: Mutations and Polymorphisms
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Explores mutations and polymorphisms, highlighting their impact on genetic diversity.
Regulation of Metabolism: Molecular Mechanisms
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Explores the molecular mechanisms regulating enzyme activity and gene expression in metabolism.
Molecular Evolution: Mutations and Genetic Diversity
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Explores mutations, genetic diversity, and horizontal gene transfer, emphasizing the impact of errors during replication and exposure to mutagens.
Neurogenetics: Building blocks of a gene
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Explores 21st-century neurogenetics and the building blocks of genes, emphasizing the impact of environment and genetics on neurodevelopment.
Gene Regulation: Transcription Mechanisms and Networks
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Explores gene regulation mechanisms, including chromatin accessibility, DNA looping, and transcription factors' role in controlling cellular functions.
RNA Switches: Design & Applications
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Explores the design and applications of RNA switches, focusing on regulatory RNA principles and engineered biomolecular components.
Regulation of Transcription and Translation
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Explores the regulation of transcription and translation processes, focusing on control mechanisms and alternative splicing in eukaryotes.
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