biological relevance of gene expression and regulation
therapeutic relevance of gene expression and regulation
genetic differences in drug responsiveness
- may affect expression of nearby genes
DNA -> RNA
where does RNA polymerase bind
- elongation with RNA pol moving down DNA adding nucleotides to the 3’ end of the transcript
prokaryotic (bacterial) gene expression (and how different from eukaryotic)
eukaryotic gene expression (and how different from bacterial)
where eukaryotic transcription and RNA processing occurs
where eukaryotic translation occurs
exons
RNA Pol I transcribes
RNA Pol II transcribes
RNA Pol III transcribes
- smaller genes
Are all three polymerases found in eukaryotes?
Each RNA polymerase recognizes a different promoter that differs n sequence
what is the 4th RNA polymerase?
- have their own
RNA polymerase II promoters
core promoters
important class of core promoter
TFIID
- TBP + TAFs
enhancers
- promote spatial, temporal, and quantitative control of transcription
upstream promoter-proximal elements
focused promoters
dispersed promoters
housekeeping genes
- regulation of levels doesn’t change very much