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Lecture notes of 19 pages for the course Genes And Bioinformatics at QMUL

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Control of gene expression in eukaryotes: part 1
Learning outcome:

1. DNA regulatory elements
2. Regulatory proteins, domain organisation and DNA-binding structures

Control of gene expression

 Eukaryotic gene expression is usually controlled at the level of initiation of
transcription by opening the chromatin.
 DNA exists in a structure called chromatin, which means inaccessible to
transcription as packaged tightly.
 Therefore, many processes regulate chromatin structure.
 Prokaryotic DNA is circular and not packaged in a nucleus.
 There are post-transcriptional ways of translating gene expression, as
mRNA needs to leave the nucleus and enter the cytoplasm for translation.
 Regulation of gene expression - whether an mRNA molecule gets translated
into a protein.
 Regulating gene expression posttranslational – is modifying mRNA to
whether it becomes a protein or not.



Linker scanning mutagenesis can be used to determine regulatory regions

 Regulatory elements in promotors were identified by schematic replacement of short DNA segments with a DNA linker
containing a random sequence exactly the same size.
- DNA Linker= double stranded DNA in between 2 nucleosome cores that in association with histone H1, holds the
core together.




 First used to search for promoter of the thymidine kinase gene in HSV.
 Microinjection into xenopus oocytes allowed assaying of gene activity (i.e.
amount of mRNA produced)
- Assay = determine the content or quality

,Thymidine kinase promotor elements identified by linker scanning

 150bp of promoter DNA from mammalian
 TATA box is centred ~-20 to -30 upstream of start site
 Clone promoter fragment then assay if there is RNA synthesis
- i.e. transcription of reporter gene (gene that researchers attach to a regulatory sequence of another gene of
interest)
- can determine where the important functional sequences are in DNA
 Overlapping linker scanning mutations (rectangles) were performed from one end of the region under investigation to
the other
 Each rectangle represents a position which a linker replaces a 6-10 nucleotide segment
 If mutate the 2 rectangles corresponding to the TATA box, TFllD does not recognise the DNA sequence anymore and
does not recruit RNA polymerase ll and reporter gene is not expressed= no mRNA
 Therefore, in the wild type DNA fragment there must be a DNA sequence element that affects transcription
 Took the 150 - 200 bp fragment of genes and made a series of overlapping mutations
 Not only the absence of TATA BOX result in loss of transcription of reporter gene
 There was a number of other regions, which they identified were called the GC rich region and CAT boxes
 The red mutations correspond to the GC and CCAAT box and resulted in no gene expression even in the presence of the
TATA box.
 These are additional regulatory elements within promoters that have nothing to do with the TATA box that still resulted
in the absence of reduction in gene expression
 The GC and CCAAT boxes are regulatory elements or promoters and upstream the core promoter
 GC and CCAAT boxes are distinct from the TATA box, Inr, TBP binding elements, downstream promoter elements
 The core promoter is required for the assembly of the preinitiation complex with RNA polymerase ll
 From the mutagenesis studies, the preinitiation complex is not sufficient for robust transcription because when you do
linker scanning mutagenesis, can identify additional sequences within wider promoter region (which is called a
regulatory promoter) that also stop transcription happening even if the PIC is present
 The GC and CCAAT boxes are present in many eukaryotic genes and they exert effect on transcription by recruiting
proteins that bind specifically to the DNA sequences
 Experiment show that thymidine kinase gene transcription is blocked by mutation in 3 distinct regions/sequences
motifs that are upstream from the transcription initiation site.
 First is the TATA box (part of the core promoter for TBP), the CCAAT box and GC box

, The proximal promoter provides regulatory elements

 CCAAT box (GGCCAATCT) and the GC box (GGGCGG) are present in the promotor of many eukaryotic genes between 50
and 2002 bp upstream from the transcriptional initiation site.
 Region upstream from the core promoter is called the proximal element.
 CCAAT and GC boxes are promoter proximal elements
 There are many other types of PPEs.




Enhancers stimulate transcription and silencers block transcription

 SV40 is a virus
 SV40 PPE consists of 6 GC boxes (GGGCGG)
 an additional regulatory sequence residues between 116-261 upstream of the transcriptional start site : enhancers
 Enhancer regulatory sequences stimulate transcription.
 Using SV40 isolated a different kind of regulatory element
 In the virus transcription takes place left and right ward and the control element is in the middle
 Mutation in the control region allowed for identification enhancers because did not stop transcription rather enhancers
enhance transcription from the start site.
 Enhancers are crucial to gene regulation




Properties of enhancers

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