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Fine control of
transcription in bacteria
Fine control of
transcription in bacteria
2
By Samaneh
Palizban
3
 The two well studied main mechanisms of transcriptional
control of gene expression are:
1.The operons : genes involved in a metabolic pathway are
regrouped into a gene cluster controlled by common regulatory
sequences and proteins. The expression of these genes are then
rapid and synchronized.
2. The cascades of gene expression : Under some
environmental conditions, expression of a first set of genes can
be “switch on”, and one or more of the products of this first
gene set will “switch on” a second gene set. This event could be
repeated many times to mobilize wider gene sets to achieve a
special metabolic pathway.
4
• The operon consists of several structural genes required for
metabolism
• under the control of a single regulatory domain = coordinate
regulation
• Repressor binding site = operator
• Site for transcriptional activation = promoter
5
Transcription Regulation in Prokaryotes
1. Negative Regulation = repressor
binds to regulatory site to block transcription of active gene
2. Positive Regulation = Activator
binds to regulatory site to stimulate transcription; gene is
off in absence of activator
Negative regulation is more common in prokaryotes
6
repressor protein blocks transcription
7
8
Negative regulation:
1- Inducible operons:
- inducer antagonizes repressor to allow transcription
initiation
- activated by small molecule inducers
- mode of regulation in degradative (catabolic)
pathways
9
Negative regulation:
1- Inducible operons
2. Repressible operons:
- shut off by small molecule co-repressors;
- mode of regulation in biosynthetic (anabolic)
pathways
LAC OPERON
- A catabolic operon
-Lactose degradation is regulated by the lactose (lac) operon
- Both positive and negative regulation
- Inducible
- Repressilbe
11
Lactose degradation is regulated by the lactose (lac) operon
12
13 •The repressor is expressed constitutively (continuously)
from the I gene and binds to the operator to block
transcription
14
15
Conditions:
Lactose –
Operon off (leaky)
16
17
Conditions:
Lactose +
18Conditions:
Lactose + Glucose +
Operon off
19
Adenylate
cyclase
Active form
Conditions: glucose scarce
Subsequence: cAMP levels high
20
Conditions:
Lactose + Glucose -
Abundant lac mRNA synthesized
operon on
21
Positive Regulation of LAC operon
CRP-cAMP
cAMP
Structural genesP O
CRP binding site
allo-lactose
22
Negative Regulation of LAC operon
Repressor-
allolactose
Allo-lactose
Structural genesP O
CRP binding site
23
Fine regulation in bacteria eg lac operon

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Fine regulation in bacteria eg lac operon

  • 1. 1
  • 2. Fine control of transcription in bacteria Fine control of transcription in bacteria 2 By Samaneh Palizban
  • 3. 3  The two well studied main mechanisms of transcriptional control of gene expression are: 1.The operons : genes involved in a metabolic pathway are regrouped into a gene cluster controlled by common regulatory sequences and proteins. The expression of these genes are then rapid and synchronized. 2. The cascades of gene expression : Under some environmental conditions, expression of a first set of genes can be “switch on”, and one or more of the products of this first gene set will “switch on” a second gene set. This event could be repeated many times to mobilize wider gene sets to achieve a special metabolic pathway.
  • 4. 4 • The operon consists of several structural genes required for metabolism • under the control of a single regulatory domain = coordinate regulation • Repressor binding site = operator • Site for transcriptional activation = promoter
  • 5. 5 Transcription Regulation in Prokaryotes 1. Negative Regulation = repressor binds to regulatory site to block transcription of active gene 2. Positive Regulation = Activator binds to regulatory site to stimulate transcription; gene is off in absence of activator Negative regulation is more common in prokaryotes
  • 7. 7
  • 8. 8 Negative regulation: 1- Inducible operons: - inducer antagonizes repressor to allow transcription initiation - activated by small molecule inducers - mode of regulation in degradative (catabolic) pathways
  • 9. 9 Negative regulation: 1- Inducible operons 2. Repressible operons: - shut off by small molecule co-repressors; - mode of regulation in biosynthetic (anabolic) pathways
  • 10. LAC OPERON - A catabolic operon -Lactose degradation is regulated by the lactose (lac) operon - Both positive and negative regulation - Inducible - Repressilbe
  • 11. 11 Lactose degradation is regulated by the lactose (lac) operon
  • 12. 12
  • 13. 13 •The repressor is expressed constitutively (continuously) from the I gene and binds to the operator to block transcription
  • 14. 14
  • 16. 16
  • 19. 19 Adenylate cyclase Active form Conditions: glucose scarce Subsequence: cAMP levels high
  • 20. 20 Conditions: Lactose + Glucose - Abundant lac mRNA synthesized operon on
  • 21. 21 Positive Regulation of LAC operon CRP-cAMP cAMP Structural genesP O CRP binding site allo-lactose
  • 22. 22 Negative Regulation of LAC operon Repressor- allolactose Allo-lactose Structural genesP O CRP binding site
  • 23. 23