Eukaryotic Gene Regulation

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User has deleted their subject information Mind Map on Eukaryotic Gene Regulation, created by Deleted user on 21/12/2016.
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Eukaryotic Gene Regulation
  1. Eukaryotic regulation harder than in Prokaryotes
    1. Hard for RNA polymerase to bind to eukaryotes
      1. chromatin hides transcriptional regulatory regions
        1. DNA packed into tight chromatin fibers of nucleosomes
          1. nucleosome: DNA wrapped around octameric histone core
            1. ionic bonds between histone (+) and DNA (-)
          2. Histones need to be moved
            1. Remodeling
              1. Why
                1. Expose regulatory regions to bind promoter
                2. methods
                  1. swi/snf
                    1. uses ATP to "nudge" over histone cores
                    2. acetylation of histone tails
                      1. removes +ve charge on histone tails
                        1. Less attraction between histones and DNA
                        2. enzyme: HATs
                      2. nucleosome remoding
                  2. Require combinatorial system with many regulatory proteins bound to many regulatory DNA sequences and to each other for RNA polymerase to bind
                    1. enhanceosomes
                      1. Protein sequence that binds to enhancer and regulates gene expression
                        1. role in transcriptional regulation
                          1. recruit GTFs. activator proteins, CBP, and RNA polymerase
                        2. Promoter
                          1. Promoter-proximal elements
                            1. Enhancer
                              1. regulatory sequence to help create combinatorial system and enhance gene expression
                                1. -20000
                                2. -100 CCAAT
                                  1. -200 GC-rich box
                                  2. -30 TATA
                                  3. Regulatory Proteins
                                    1. General Transcription Factors (GTF)
                                      1. DNA-binding region
                                        1. regulatory protein binding region
                                        2. DNA binding proteins
                                          1. bends DNA for more stable enhancesome
                                  4. GAL system
                                    1. yeast
                                      1. Chrom 12
                                        1. UAS ->
                                          1. GAL2
                                            1. Gal2
                                              1. 1) brings galactose into cell
                                        2. Chrom 2
                                          1. GAL 7 <-
                                            1. <- Upstream activation sequence (UAS)
                                              1. GAL 10 <-
                                                1. <- UAS ->
                                                  1. Mig1 site
                                                    1. -> GAL1
                                                      1. gal1
                                                        1. 2) Converts galactose into galactose-1-phosphate
                                                      2. Mig1
                                                        1. Tup1
                                                    2. gal10
                                                      1. 4) converts UDP-galactose into UDP-glucose
                                                  2. gal7
                                                    1. 3) Converts galactose-1-phosphate into UDP-galactose
                                                      1. 5) converts UDP-glucose into glucose-1-phosphate
                                                        1. enters Glycolysis
                                                  3. Gal4
                                                    1. DNA-binding domain: Attaches to UAS
                                                      1. GTF, dimer
                                                        1. Activation domain: Binds to other proteins
                                                          1. Mutation in either domain: cannot form enhanceosome
                                                        2. Gal80
                                                          1. binds to Gal4
                                                            1. prevent formation of enhanceosome
                                                          2. Gal3
                                                            1. Galactose and ATP present
                                                              1. Binds to Gal80
                                                                1. Removes Gal80 so enhanceosome can form
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