SlideShare uma empresa Scribd logo
1 de 43
Transcription in Prokaryotes
12
Components
Template and Enzymes
17
§1.1 Template
The template strand is the strand from which the RNA is actually transcribed. It is
also termed as antisense strand.
The coding strand is the strand whose base sequence specifies the amino acid
sequence of the encoded protein. Therefore, it is also called as sense strand.
18
• Some time, Both strands of DNA can be used as the
templates for Transcription.
• The transcription direction on different strands is
opposite.
• This feature is referred to as the asymmetric
transcription.
Asymmetric transcription
19
RNA Polymerase
• The enzyme responsible for the RNA synthesis is
DNA-dependent RNA polymerase.
– The prokaryotic RNA polymerase is a multiple-
subunit protein of ~480kD.
– Eukaryotic systems have three kinds of RNA
polymerases, each of which is a multiple-
subunit protein and responsible for
transcription of different RNAs.
• RNA polymerase
– 4 core subunits
– Sigma factor (σ)–
determines promoter
specificity
– Core + σ = holoenzyme
– Binds promoter sequence
20
Important
RNA-pol of Prokaryotes : Only one Type : 6 sub units
RNA-pol of eukaryotes – 3 types
subunit MW function
 36512 Determine the DNA to be transcribed
 150618 Catalyze polymerization
 155613 Bind & open DNA template
 70263
Recognize the promoter
for synthesis initiation
21
Mechanism
General concepts
• Three phases: initiation, elongation, and termination.
• The prokaryotic RNA-pol can bind to the DNA template directly in the transcription process.
• The eukaryotic RNA-pol requires co-factors to bind to the DNA template together in the transcription
process.
• Initiation phase: RNA-pol recognizes the promoter and starts the transcription.
• Elongation phase: the RNA strand is continuously growing.
• Termination phase: the RNA-pol stops synthesis and the nascent RNA is separated from the DNA template.
22
7
Transcription
23
11
Important
24
• The promoter is the DNA sequence that RNA-pol can
bind. It is the key point for the transcription control.
•
§Initiation - 1.3 Recognition of Origins
Promoter
5'
3'
3'
5'
regulatory
sequences
structural gene
RNA-pol
25
8
Prokaryotic promoter
5'
3'
3'
5'
-50 -40 -30 -20 -10 1 10
start
-10
region
T A T A A T
A T A T T A
(Pribnow box)
-35
region
T T G A C A
A A C T G T
Consensus
sequence
The -35 region of TTGACA sequence is the recognition site and the binding site of RNA-pol.
The -10 region of TATAAT is the region at which a stable complex of DNA and RNA-pol is formed.
RNA-pol recognizes the TTGACA region, and slides to the TATAAT region, then opens the
DNA duplex. The unwound region is about 171 bp.
26
9
• The first nucleotide on RNA transcript is always purine
triphosphate. GTP is more often than ATP.
• The pppGpN-OH structure remains on the RNA transcript
until the RNA synthesis is completed.
• The three molecules form a transcription initiation comple
•
• No primer is needed for RNA synthesis.
• The  subunit falls off from the RNA-pol once the first 3,5
phosphodiester bond is formed.
• The core enzyme moves along the DNA template to enter
the elongation phase.
RNA-pol (2) - DNA - pppGpN- OH 3
27
1
0
b. Elongation
• The release of the  subunit causes the conformational change of the core
enzyme. The core enzyme slides on the DNA template toward the 3 end.
• Free NTPs are added sequentially to the 3 -OH of the nascent RNA strand.
•
• RNA-pol, DNA segment of ~40nt and the nascent RNA form a complex
called the transcription bubble.
• The 3 segment of the nascent RNA hybridizes with the DNA template, and
its 5 end extends out the transcription bubble as the synthesis is
processing.
(NMP)n + NTP (NMP)n+1 + PPi
RNA strand substrate
elongated
RNA strand
28
11
c. Termination
• The RNA-pol stops moving on the
DNA template. The RNA transcript
falls off from the transcription
complex.
• The termination occurs in either  -
dependent or
 -independent manner.
29
12
The termination function of  factor
The  factor, a hexamer, is a
ATPase
30
13
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptx

Mais conteúdo relacionado

Mais procurados

Mais procurados (20)

Prokaryotic transcription
Prokaryotic transcriptionProkaryotic transcription
Prokaryotic transcription
 
Dna replication in prokaryotes
Dna replication in prokaryotesDna replication in prokaryotes
Dna replication in prokaryotes
 
Prokaryotic Replication presentation
Prokaryotic Replication presentationProkaryotic Replication presentation
Prokaryotic Replication presentation
 
translation
translationtranslation
translation
 
Ribosomal rna sequencing
Ribosomal rna sequencingRibosomal rna sequencing
Ribosomal rna sequencing
 
Eukaryotic transcription
Eukaryotic transcriptionEukaryotic transcription
Eukaryotic transcription
 
Tryptophan operon
Tryptophan operonTryptophan operon
Tryptophan operon
 
Rna polymerase
Rna polymeraseRna polymerase
Rna polymerase
 
Transcription
TranscriptionTranscription
Transcription
 
Inhibitors of transcription.pptx
Inhibitors of transcription.pptxInhibitors of transcription.pptx
Inhibitors of transcription.pptx
 
Eukaryotic transcription
Eukaryotic transcription Eukaryotic transcription
Eukaryotic transcription
 
Transcription in Eukaryotes
Transcription in EukaryotesTranscription in Eukaryotes
Transcription in Eukaryotes
 
Transcription in eukaryotes
Transcription in eukaryotesTranscription in eukaryotes
Transcription in eukaryotes
 
Transcription in prokaryotes and eukaryotes
Transcription in prokaryotes and eukaryotesTranscription in prokaryotes and eukaryotes
Transcription in prokaryotes and eukaryotes
 
Fidelity of DNA replication
Fidelity of DNA replication Fidelity of DNA replication
Fidelity of DNA replication
 
Transcription process
Transcription processTranscription process
Transcription process
 
Lac operon
Lac operonLac operon
Lac operon
 
Polyadenylation
PolyadenylationPolyadenylation
Polyadenylation
 
Transcription
Transcription Transcription
Transcription
 
Translation(molecular biology)
Translation(molecular biology)Translation(molecular biology)
Translation(molecular biology)
 

Semelhante a Transcription in Prokaryotes.pptx

Biochemistry transcription (RNA biosynsthesis)
Biochemistry transcription (RNA biosynsthesis)Biochemistry transcription (RNA biosynsthesis)
Biochemistry transcription (RNA biosynsthesis)
Prabesh Raj Jamkatel
 
DNA-RNA-Protein in microbes
DNA-RNA-Protein in microbesDNA-RNA-Protein in microbes
DNA-RNA-Protein in microbes
Charles Spencer
 

Semelhante a Transcription in Prokaryotes.pptx (20)

Biochemistry transcription (RNA biosynsthesis)
Biochemistry transcription (RNA biosynsthesis)Biochemistry transcription (RNA biosynsthesis)
Biochemistry transcription (RNA biosynsthesis)
 
Transcription
TranscriptionTranscription
Transcription
 
RNA Synthesis (Transcription).pptx
RNA Synthesis (Transcription).pptxRNA Synthesis (Transcription).pptx
RNA Synthesis (Transcription).pptx
 
Transcription (term paper) by Ganesh M
Transcription (term paper) by Ganesh MTranscription (term paper) by Ganesh M
Transcription (term paper) by Ganesh M
 
Transcription
TranscriptionTranscription
Transcription
 
Prokaryotic transcription
Prokaryotic transcriptionProkaryotic transcription
Prokaryotic transcription
 
Transcription
TranscriptionTranscription
Transcription
 
1123
11231123
1123
 
The flow of genetic information transcription
The flow of genetic information transcriptionThe flow of genetic information transcription
The flow of genetic information transcription
 
DNA Transcription and RNA Processing
DNA Transcription and RNA Processing DNA Transcription and RNA Processing
DNA Transcription and RNA Processing
 
Transcription b.pharm
Transcription b.pharmTranscription b.pharm
Transcription b.pharm
 
Presentation.pptx
Presentation.pptxPresentation.pptx
Presentation.pptx
 
Transcription
TranscriptionTranscription
Transcription
 
Transcription of RNA
Transcription of RNATranscription of RNA
Transcription of RNA
 
DNA-RNA-Protein in microbes
DNA-RNA-Protein in microbesDNA-RNA-Protein in microbes
DNA-RNA-Protein in microbes
 
Transcription
TranscriptionTranscription
Transcription
 
PROKAYOTIC TRANSCRIPTION.pptx
PROKAYOTIC TRANSCRIPTION.pptxPROKAYOTIC TRANSCRIPTION.pptx
PROKAYOTIC TRANSCRIPTION.pptx
 
Transcription sm.pptx
Transcription sm.pptxTranscription sm.pptx
Transcription sm.pptx
 
GENE_TRANSCRIPTION_PROCESS_IN_BACTERIA_L5.pdf
GENE_TRANSCRIPTION_PROCESS_IN_BACTERIA_L5.pdfGENE_TRANSCRIPTION_PROCESS_IN_BACTERIA_L5.pdf
GENE_TRANSCRIPTION_PROCESS_IN_BACTERIA_L5.pdf
 
Transcription of DNA to RNA by Dr. Anurag Yadav
Transcription of DNA to RNA by Dr. Anurag YadavTranscription of DNA to RNA by Dr. Anurag Yadav
Transcription of DNA to RNA by Dr. Anurag Yadav
 

Mais de Department of Biotechnology, Kamaraj college of engineering and technology

Mais de Department of Biotechnology, Kamaraj college of engineering and technology (20)

Phage Gene Regulation.pptx
Phage Gene Regulation.pptxPhage Gene Regulation.pptx
Phage Gene Regulation.pptx
 
Trp Operon.pptx
Trp Operon.pptxTrp Operon.pptx
Trp Operon.pptx
 
Lac operon.pptx
Lac operon.pptxLac operon.pptx
Lac operon.pptx
 
post translational modification.pptx
post translational modification.pptxpost translational modification.pptx
post translational modification.pptx
 
Inhibitors of protein synthesis.pptx
Inhibitors of protein synthesis.pptxInhibitors of protein synthesis.pptx
Inhibitors of protein synthesis.pptx
 
Protein Synthesis.pptx
Protein Synthesis.pptxProtein Synthesis.pptx
Protein Synthesis.pptx
 
Ribosomes.pptx
Ribosomes.pptxRibosomes.pptx
Ribosomes.pptx
 
Translation Basics.ppt
Translation Basics.pptTranslation Basics.ppt
Translation Basics.ppt
 
Mutation and DNA repair.pdf
Mutation and DNA repair.pdfMutation and DNA repair.pdf
Mutation and DNA repair.pdf
 
TELOMERE AND TELOMERASE.pdf
TELOMERE AND TELOMERASE.pdfTELOMERE AND TELOMERASE.pdf
TELOMERE AND TELOMERASE.pdf
 
DNA Replication.pdf
DNA Replication.pdfDNA Replication.pdf
DNA Replication.pdf
 
Structure and function of RNA.pptx
Structure and function of RNA.pptxStructure and function of RNA.pptx
Structure and function of RNA.pptx
 
Regulatory elements of transcription.pptx
Regulatory elements of transcription.pptxRegulatory elements of transcription.pptx
Regulatory elements of transcription.pptx
 
ribozyme.pptx
ribozyme.pptxribozyme.pptx
ribozyme.pptx
 
RNA processing and Splicing.pptx
RNA processing and Splicing.pptxRNA processing and Splicing.pptx
RNA processing and Splicing.pptx
 
Transcription in Eukaryotes.pptx
Transcription in Eukaryotes.pptxTranscription in Eukaryotes.pptx
Transcription in Eukaryotes.pptx
 
denaturation and renaturation of dna.pptx
denaturation and renaturation of dna.pptxdenaturation and renaturation of dna.pptx
denaturation and renaturation of dna.pptx
 
Forces That Stabilize the DNA structure.pptx
Forces That Stabilize the DNA structure.pptxForces That Stabilize the DNA structure.pptx
Forces That Stabilize the DNA structure.pptx
 
Nucleic Acids.pptx
Nucleic Acids.pptxNucleic Acids.pptx
Nucleic Acids.pptx
 
STRESS TOLERANCE
STRESS TOLERANCESTRESS TOLERANCE
STRESS TOLERANCE
 

Último

1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdf
QucHHunhnh
 

Último (20)

Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptx
 
Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdf
 
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdfUGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
 
Grant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingGrant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy Consulting
 
Unit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxUnit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptx
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introduction
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.ppt
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)
 
Magic bus Group work1and 2 (Team 3).pptx
Magic bus Group work1and 2 (Team 3).pptxMagic bus Group work1and 2 (Team 3).pptx
Magic bus Group work1and 2 (Team 3).pptx
 
How to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POSHow to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POS
 
Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...
 
How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17
 
Sociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning ExhibitSociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning Exhibit
 
Micro-Scholarship, What it is, How can it help me.pdf
Micro-Scholarship, What it is, How can it help me.pdfMicro-Scholarship, What it is, How can it help me.pdf
Micro-Scholarship, What it is, How can it help me.pdf
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdf
 
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptxSKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
 
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptxBasic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
 
Asian American Pacific Islander Month DDSD 2024.pptx
Asian American Pacific Islander Month DDSD 2024.pptxAsian American Pacific Islander Month DDSD 2024.pptx
Asian American Pacific Islander Month DDSD 2024.pptx
 
Mixin Classes in Odoo 17 How to Extend Models Using Mixin Classes
Mixin Classes in Odoo 17  How to Extend Models Using Mixin ClassesMixin Classes in Odoo 17  How to Extend Models Using Mixin Classes
Mixin Classes in Odoo 17 How to Extend Models Using Mixin Classes
 

Transcription in Prokaryotes.pptx

  • 2.
  • 3.
  • 4.
  • 5.
  • 6.
  • 7.
  • 8.
  • 9.
  • 10.
  • 11.
  • 12. 12
  • 13.
  • 14.
  • 15.
  • 16.
  • 18. §1.1 Template The template strand is the strand from which the RNA is actually transcribed. It is also termed as antisense strand. The coding strand is the strand whose base sequence specifies the amino acid sequence of the encoded protein. Therefore, it is also called as sense strand. 18
  • 19. • Some time, Both strands of DNA can be used as the templates for Transcription. • The transcription direction on different strands is opposite. • This feature is referred to as the asymmetric transcription. Asymmetric transcription 19
  • 20. RNA Polymerase • The enzyme responsible for the RNA synthesis is DNA-dependent RNA polymerase. – The prokaryotic RNA polymerase is a multiple- subunit protein of ~480kD. – Eukaryotic systems have three kinds of RNA polymerases, each of which is a multiple- subunit protein and responsible for transcription of different RNAs. • RNA polymerase – 4 core subunits – Sigma factor (σ)– determines promoter specificity – Core + σ = holoenzyme – Binds promoter sequence 20 Important
  • 21. RNA-pol of Prokaryotes : Only one Type : 6 sub units RNA-pol of eukaryotes – 3 types subunit MW function  36512 Determine the DNA to be transcribed  150618 Catalyze polymerization  155613 Bind & open DNA template  70263 Recognize the promoter for synthesis initiation 21
  • 22. Mechanism General concepts • Three phases: initiation, elongation, and termination. • The prokaryotic RNA-pol can bind to the DNA template directly in the transcription process. • The eukaryotic RNA-pol requires co-factors to bind to the DNA template together in the transcription process. • Initiation phase: RNA-pol recognizes the promoter and starts the transcription. • Elongation phase: the RNA strand is continuously growing. • Termination phase: the RNA-pol stops synthesis and the nascent RNA is separated from the DNA template. 22 7
  • 24. 24
  • 25. • The promoter is the DNA sequence that RNA-pol can bind. It is the key point for the transcription control. • §Initiation - 1.3 Recognition of Origins Promoter 5' 3' 3' 5' regulatory sequences structural gene RNA-pol 25 8
  • 26. Prokaryotic promoter 5' 3' 3' 5' -50 -40 -30 -20 -10 1 10 start -10 region T A T A A T A T A T T A (Pribnow box) -35 region T T G A C A A A C T G T Consensus sequence The -35 region of TTGACA sequence is the recognition site and the binding site of RNA-pol. The -10 region of TATAAT is the region at which a stable complex of DNA and RNA-pol is formed. RNA-pol recognizes the TTGACA region, and slides to the TATAAT region, then opens the DNA duplex. The unwound region is about 171 bp. 26 9
  • 27. • The first nucleotide on RNA transcript is always purine triphosphate. GTP is more often than ATP. • The pppGpN-OH structure remains on the RNA transcript until the RNA synthesis is completed. • The three molecules form a transcription initiation comple • • No primer is needed for RNA synthesis. • The  subunit falls off from the RNA-pol once the first 3,5 phosphodiester bond is formed. • The core enzyme moves along the DNA template to enter the elongation phase. RNA-pol (2) - DNA - pppGpN- OH 3 27 1 0
  • 28. b. Elongation • The release of the  subunit causes the conformational change of the core enzyme. The core enzyme slides on the DNA template toward the 3 end. • Free NTPs are added sequentially to the 3 -OH of the nascent RNA strand. • • RNA-pol, DNA segment of ~40nt and the nascent RNA form a complex called the transcription bubble. • The 3 segment of the nascent RNA hybridizes with the DNA template, and its 5 end extends out the transcription bubble as the synthesis is processing. (NMP)n + NTP (NMP)n+1 + PPi RNA strand substrate elongated RNA strand 28 11
  • 29. c. Termination • The RNA-pol stops moving on the DNA template. The RNA transcript falls off from the transcription complex. • The termination occurs in either  - dependent or  -independent manner. 29 12
  • 30. The termination function of  factor The  factor, a hexamer, is a ATPase 30 13