Course review

D2.2 Gene expression [HL only]

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Learning objective

D2.2.1 (HL)—Gene expression mechanism

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• Gene expression uses DNA information to affect phenotype through proteins • Main stages are transcription, translation, and protein function

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Learning objective

D2.2.2 (HL)—Regulation of transcription

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• Transcription factors bind specific DNA sequences to regulate transcription • Promoters, enhancers, activators, and repressors alter RNA polymerase activity

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Learning objective

D2.2.3 (HL)—Control of mRNA degradation

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• mRNA degradation controls how long translation can continue • Poly-A tail shortening and nucleases help remove mRNA after use

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Learning objective

D2.2.4 (HL)—Epigenesis

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• Epigenesis develops differentiation patterns from an undifferentiated zygote • Epigenetic changes alter gene activity without changing DNA base sequence

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Learning objective

D2.2.5 (HL)—Genome, transcriptome, proteome

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• Genome is all genetic information; transcriptome is expressed mRNA set • Proteome is the dynamic protein set produced by cell type, time, and environment

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Learning objective

D2.2.6 (HL)—Epigenetic tags

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• Promoter DNA methylation usually represses downstream transcription • Histone methylation or acetylation changes chromatin access and gene expression

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Learning objective

D2.2.7 (HL)—Epigenetic inheritance

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• Epigenetic inheritance passes gene-expression changes without DNA sequence change • Persistent DNA methylation or histone tags can survive cell division or gamete formation

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Learning objective

D2.2.8 (HL)—Environmental effects on expression

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• Diet, oxygen, light, drugs, temperature, mutagens, and pollution can alter expression • Air pollution can modify DNA and histone methylation linked to lung disease

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Learning objective

D2.2.9 (HL)—Epigenetic tag removal

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• Most epigenetic tags are reset during human egg and sperm development • Retained imprints can silence one parental allele and affect offspring phenotypes

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Learning objective

D2.2.10 (HL)—Monozygotic twin studies

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• Monozygotic twins share a genome, helping test genetic versus environmental effects • Epigenetic differences can accumulate with age and different environments

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Learning objective

D2.2.11 (HL)—External factors

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• Hormones regulate eukaryotic expression through receptors and transcription factors • Lac and trp operons show inducible and repressible gene control in bacteria

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