SlideShare uma empresa Scribd logo
1 de 22
REPLICATION OF DNA
Content
 Introduction
 What is replication of DNA ?
 Basic rules of DNA replication
 Process of DNA replication
 Enzymes involved in DNA replication
Introduction
• In molecular biology DNA replication is the biological process of
producing two identical replicas of DNA from one original DNA
molecule .
• DNA replication was postulated by Watson and Crick after they
dicoverd the structure of DNA .
• DNA replication is semiconservative . Each srand in the double helix
acts as a template for synthesis of a new , complementary .
• The process of DNA replication is vital for cell growth , repair , and
reproduction in organisms .
What is replication of DNA ?
• DNA replication is the process by which DNA makes a copy of itself
during cell division .
• This process takes us from one starting molecule to two daughter
molecules , with each newly formed double helix containing one
new and one old strand .
• DNA found within the nucleus , must be replicated in order to
ensure that each new cell receives he correct number of
chromosomes. The process of duplication is called DNA replication .
• Fundamental process occurring in all cells for copying DNA to
transfer the genetic information to daughter cells .
Basic rules of DNA replication
1 . Replication is always semiconservative .
2 . Replication begins at the sequences called origins .
3 . DNA synthesis is initiated by short fragments of RNA call primers .
4 . The elongation of DNA strands is always in the 5’ to 3’ direction .
5 . DNA replication can be uni or bidirectional .
6 . Replication is continuous on the leading strand and discontinuous
on the lagging strand .
7 . New nucleotide strands are complementary and antiparallel to
their template strands .
8 . Replication takes place at very high rates and is astonishingly
accurate due to the processes of nucleotide selection , proof reading
and repair mechanisms .
Process of DNA Replication
step 1 :- Replication fork formation
 before DNA can be replicated the double stranded molecule must
be unzipped into two single strands .
 DNA has four base called adenine , thymine , cytosine and guanine
that form pairs between the two strands .
 in order to unwind DNA these interaction between base pairs must
be broken .
 these is performed by an enzyme known as DNA helicase .
 DNA helicase separate the strands into Y shape known as the
replication fork .
Step 2 :- Primer binding
 The leding strands is the simplest to replicated .
 once the DNA strands have been separated , a short piece of RNA
called a primer binds to the 3’ end of the strand .
 The primer always binds as the starting point for replication .
 Primers are generated by the enzyme DNA primase .
 DNA polymerase 3’ can only nucleotides to existing strands of DNA .
Step 3 :- Elongation
 Enzymes known as DNA polymerases are responsible creating the new
strands by a process called elongation .
 In eukaryotic cells polymerases alpha , delta and epsilon are the primary
polymerases involved in DNA replication . Because replication proceeds in
the 5’ to 3’ direction on the leading strand , the newly formed strands is
continuous .
 The lagging strands begins replication by binding with multiple primer .
 Each primer is only several bases apart .
 DNA polymerase then adds pieces of DNA , called Okazaki fragments , to
the strand between primers .
 This process of replication is discontinuous as the newly created fragments
are disjointed .
 Involves the addition of new nucleotides based on complementarity of the
templated strands .
 The daughter strands is elongated with the binding of more DNA
nucleotides .
Step 4 :- Termination
 Once both the continuous and discontinuous strands are formed , an
enzyme called exonuclease removes all RNA primers from the original
strands .
 These primers are then replaced with appropriate bases .
 another enzyme called DNA ligase joins Okazaki fragments together
forming a single unified strands .
 The ends of the linear DNA presents a problem as DNA polymerase can only
add nucleotides in the 5’ to 3’ direction .
 Once completed the parent strand and its complementary DNA strands
coils into the familiar double helix shape .
 In the end replication produces two DNA molecules , each with one strand
from the parent molecule and one new strand .
Enzyme involve in DNA replication
• DNA replication would not occur without enzymes that catalyse
various steps in the process .
 DNA helicase :-
 unwind and separates double stranded as it moves along the DNA .
 DNA primase :-
 A type of RNA polymerase that generates RNA primers . RNA
molecule acts as templates for the starting point of DNA replication
.
 DNA polymerases :-
 Synthesize new DNA molecules by adding nucleotides to leading and
lagging DNA strands .
 DNA Gyrase :-
 unwind and rewinds DNA strands to prevent the DNA from becoming
tangled or supercoiled .
 DNA ligase :-
 joins DNA fragments together by forming phosphodiester bonds between
nucleotides .
 Single strand binding proteins :-
 Keep the DNA single stranded after it has been melted by helicase .
 RNA primer :-
 RNA primer composed of multiple bases that attached to the template
strands to initiate the DNA replication .
 Telomerase :-
 Finishes off the ends of DNA strands .
REFREENCES
 Molecular biology by :- P.S Verma & V. K Agraval
https://www.thoughtco.com
THANK YOU

Mais conteúdo relacionado

Mais procurados

Transcription
TranscriptionTranscription
Transcriptionjoyjulie
 
DNA Replication -
DNA Replication -DNA Replication -
DNA Replication -Ashok Katta
 
DNA strcture and function
DNA strcture and functionDNA strcture and function
DNA strcture and functionvruddhi desai
 
Genetic code and its properties
Genetic code and its propertiesGenetic code and its properties
Genetic code and its propertiesAnup Bajracharya
 
Translation in prokaryotes
Translation in prokaryotesTranslation in prokaryotes
Translation in prokaryotesPraveen Garg
 
Transcription in eukaryotes
Transcription in eukaryotesTranscription in eukaryotes
Transcription in eukaryotesHemantkrdu
 
Semiconservative DNA replication
Semiconservative  DNA replicationSemiconservative  DNA replication
Semiconservative DNA replicationEmaSushan
 
RNA- Structure, Types and Functions
RNA- Structure, Types and FunctionsRNA- Structure, Types and Functions
RNA- Structure, Types and FunctionsNamrata Chhabra
 
Denaturation and renaturation of dna
Denaturation and renaturation of dnaDenaturation and renaturation of dna
Denaturation and renaturation of dnapunya08
 
Transcription in prokaryotes
Transcription in prokaryotesTranscription in prokaryotes
Transcription in prokaryotesKaayathri Devi
 
Watson and crick model of dna
Watson and crick model of dnaWatson and crick model of dna
Watson and crick model of dnaBangaluru
 
Translation in Eukaryotes.
Translation in Eukaryotes.Translation in Eukaryotes.
Translation in Eukaryotes.Anushi Jain
 
Dna repair mechanisms
Dna repair mechanismsDna repair mechanisms
Dna repair mechanismsShariqaJan
 

Mais procurados (20)

Transcription
TranscriptionTranscription
Transcription
 
DNA Replication -
DNA Replication -DNA Replication -
DNA Replication -
 
DNA reparing
DNA reparingDNA reparing
DNA reparing
 
DNA strcture and function
DNA strcture and functionDNA strcture and function
DNA strcture and function
 
Genetic code and its properties
Genetic code and its propertiesGenetic code and its properties
Genetic code and its properties
 
The Lac operon
The Lac operonThe Lac operon
The Lac operon
 
Translation in prokaryotes
Translation in prokaryotesTranslation in prokaryotes
Translation in prokaryotes
 
Transcription in eukaryotes
Transcription in eukaryotesTranscription in eukaryotes
Transcription in eukaryotes
 
Semiconservative DNA replication
Semiconservative  DNA replicationSemiconservative  DNA replication
Semiconservative DNA replication
 
RNA- Structure, Types and Functions
RNA- Structure, Types and FunctionsRNA- Structure, Types and Functions
RNA- Structure, Types and Functions
 
Denaturation and renaturation of dna
Denaturation and renaturation of dnaDenaturation and renaturation of dna
Denaturation and renaturation of dna
 
Transcription in prokaryotes
Transcription in prokaryotesTranscription in prokaryotes
Transcription in prokaryotes
 
Watson and crick model of dna
Watson and crick model of dnaWatson and crick model of dna
Watson and crick model of dna
 
Translation in Eukaryotes.
Translation in Eukaryotes.Translation in Eukaryotes.
Translation in Eukaryotes.
 
DNA Replication
 DNA Replication DNA Replication
DNA Replication
 
Dna repair mechanisms
Dna repair mechanismsDna repair mechanisms
Dna repair mechanisms
 
Transcription in eukaryotes
Transcription in eukaryotesTranscription in eukaryotes
Transcription in eukaryotes
 
Translation
TranslationTranslation
Translation
 
RNA PROCESSING
RNA  PROCESSINGRNA  PROCESSING
RNA PROCESSING
 
Dna replication
Dna replication Dna replication
Dna replication
 

Semelhante a Replication of DNA

molecular biology ,Replication of DNA,with all steps
molecular biology ,Replication of DNA,with all stepsmolecular biology ,Replication of DNA,with all steps
molecular biology ,Replication of DNA,with all stepsMuhammadMusharaf17
 
presentation_replication_1594017413_380216.pptx
presentation_replication_1594017413_380216.pptxpresentation_replication_1594017413_380216.pptx
presentation_replication_1594017413_380216.pptxYoGeshSharma834784
 
DNA Replication
DNA ReplicationDNA Replication
DNA ReplicationSalmaAjmal
 
Chapter 8 microbial genetics
Chapter 8 microbial geneticsChapter 8 microbial genetics
Chapter 8 microbial geneticsBilalHoushaymi
 
Replication of DNA
Replication of DNAReplication of DNA
Replication of DNAFarhana Atia
 
DNA replication (1).ppt
DNA replication (1).pptDNA replication (1).ppt
DNA replication (1).pptAshok Kumar LP
 
DNA replication in Prokaryotes
DNA replication in Prokaryotes DNA replication in Prokaryotes
DNA replication in Prokaryotes Dr-Akhilesh Kumar
 
dna transcription and the translation.pptx
dna transcription and the translation.pptxdna transcription and the translation.pptx
dna transcription and the translation.pptxwemoji5816
 
Fidelity of DNA replication
Fidelity of DNA replication Fidelity of DNA replication
Fidelity of DNA replication AnuKiruthika
 
Replication of DNA
Replication of DNAReplication of DNA
Replication of DNAShankar0103
 
DNA replication in prokaryotes
DNA replication in prokaryotes DNA replication in prokaryotes
DNA replication in prokaryotes RanaMuhammadFurqan
 
Replication
ReplicationReplication
Replicationammara12
 
Assignment_bio about the replication of dna .pptx
Assignment_bio about the replication of dna .pptxAssignment_bio about the replication of dna .pptx
Assignment_bio about the replication of dna .pptxwemoji5816
 
DNA replication .pptx
DNA replication .pptxDNA replication .pptx
DNA replication .pptxmillathuseen
 
IB Biology 2.7 & 7.1 Slides: DNA Replication
IB Biology 2.7 & 7.1 Slides: DNA ReplicationIB Biology 2.7 & 7.1 Slides: DNA Replication
IB Biology 2.7 & 7.1 Slides: DNA ReplicationJacob Cedarbaum
 

Semelhante a Replication of DNA (20)

molecular biology ,Replication of DNA,with all steps
molecular biology ,Replication of DNA,with all stepsmolecular biology ,Replication of DNA,with all steps
molecular biology ,Replication of DNA,with all steps
 
presentation_replication_1594017413_380216.pptx
presentation_replication_1594017413_380216.pptxpresentation_replication_1594017413_380216.pptx
presentation_replication_1594017413_380216.pptx
 
DNA Replication
DNA ReplicationDNA Replication
DNA Replication
 
Dna replication
Dna replication Dna replication
Dna replication
 
Chapter 8 microbial genetics
Chapter 8 microbial geneticsChapter 8 microbial genetics
Chapter 8 microbial genetics
 
Replication of DNA
Replication of DNAReplication of DNA
Replication of DNA
 
DNA replication (1).ppt
DNA replication (1).pptDNA replication (1).ppt
DNA replication (1).ppt
 
DNA replication.ppt
DNA replication.pptDNA replication.ppt
DNA replication.ppt
 
DNA replication in Prokaryotes
DNA replication in Prokaryotes DNA replication in Prokaryotes
DNA replication in Prokaryotes
 
dna transcription and the translation.pptx
dna transcription and the translation.pptxdna transcription and the translation.pptx
dna transcription and the translation.pptx
 
DNA REPLICATION
DNA REPLICATION DNA REPLICATION
DNA REPLICATION
 
Fidelity of DNA replication
Fidelity of DNA replication Fidelity of DNA replication
Fidelity of DNA replication
 
Replication of DNA
Replication of DNAReplication of DNA
Replication of DNA
 
DNA replication in prokaryotes
DNA replication in prokaryotes DNA replication in prokaryotes
DNA replication in prokaryotes
 
Replication
ReplicationReplication
Replication
 
DNA Replication.ppt
DNA Replication.pptDNA Replication.ppt
DNA Replication.ppt
 
Replication
ReplicationReplication
Replication
 
Assignment_bio about the replication of dna .pptx
Assignment_bio about the replication of dna .pptxAssignment_bio about the replication of dna .pptx
Assignment_bio about the replication of dna .pptx
 
DNA replication .pptx
DNA replication .pptxDNA replication .pptx
DNA replication .pptx
 
IB Biology 2.7 & 7.1 Slides: DNA Replication
IB Biology 2.7 & 7.1 Slides: DNA ReplicationIB Biology 2.7 & 7.1 Slides: DNA Replication
IB Biology 2.7 & 7.1 Slides: DNA Replication
 

Mais de gohil sanjay bhagvanji

MOLECULAR ORGANIZATION OF EKARYOTIC RNA
 MOLECULAR ORGANIZATION OF EKARYOTIC RNA MOLECULAR ORGANIZATION OF EKARYOTIC RNA
MOLECULAR ORGANIZATION OF EKARYOTIC RNAgohil sanjay bhagvanji
 
Wobble hypothesis AND new genetic code
Wobble hypothesis AND new genetic codeWobble hypothesis AND new genetic code
Wobble hypothesis AND new genetic codegohil sanjay bhagvanji
 
Second genetic code overlapping and split genes
Second genetic code overlapping and split genesSecond genetic code overlapping and split genes
Second genetic code overlapping and split genesgohil sanjay bhagvanji
 
Rna polymerase & transcription in prokaryotes
Rna polymerase & transcription in prokaryotesRna polymerase & transcription in prokaryotes
Rna polymerase & transcription in prokaryotesgohil sanjay bhagvanji
 
Regulation of mitotic cell cycle in eukaryotes
Regulation of mitotic cell cycle in eukaryotesRegulation of mitotic cell cycle in eukaryotes
Regulation of mitotic cell cycle in eukaryotesgohil sanjay bhagvanji
 
Regulation of gene expression in prokaryotes
Regulation of gene expression in prokaryotesRegulation of gene expression in prokaryotes
Regulation of gene expression in prokaryotesgohil sanjay bhagvanji
 
Molecular organization of eukaryotic DNA
Molecular organization of eukaryotic DNAMolecular organization of eukaryotic DNA
Molecular organization of eukaryotic DNAgohil sanjay bhagvanji
 
Initiation and termination codons , mutation and genetic code
Initiation and termination codons , mutation and genetic codeInitiation and termination codons , mutation and genetic code
Initiation and termination codons , mutation and genetic codegohil sanjay bhagvanji
 
construction of genomicc dna libraries
construction of genomicc dna librariesconstruction of genomicc dna libraries
construction of genomicc dna librariesgohil sanjay bhagvanji
 

Mais de gohil sanjay bhagvanji (20)

MOLECULAR ORGANIZATION OF EKARYOTIC RNA
 MOLECULAR ORGANIZATION OF EKARYOTIC RNA MOLECULAR ORGANIZATION OF EKARYOTIC RNA
MOLECULAR ORGANIZATION OF EKARYOTIC RNA
 
Wobble hypothesis AND new genetic code
Wobble hypothesis AND new genetic codeWobble hypothesis AND new genetic code
Wobble hypothesis AND new genetic code
 
Translation ( synthesis of proteins )
Translation ( synthesis  of  proteins )Translation ( synthesis  of  proteins )
Translation ( synthesis of proteins )
 
Second genetic code overlapping and split genes
Second genetic code overlapping and split genesSecond genetic code overlapping and split genes
Second genetic code overlapping and split genes
 
Rna polymerase & transcription in prokaryotes
Rna polymerase & transcription in prokaryotesRna polymerase & transcription in prokaryotes
Rna polymerase & transcription in prokaryotes
 
Regulation of mitotic cell cycle in eukaryotes
Regulation of mitotic cell cycle in eukaryotesRegulation of mitotic cell cycle in eukaryotes
Regulation of mitotic cell cycle in eukaryotes
 
Regulation of gene expression in prokaryotes
Regulation of gene expression in prokaryotesRegulation of gene expression in prokaryotes
Regulation of gene expression in prokaryotes
 
Molecular organization of eukaryotic DNA
Molecular organization of eukaryotic DNAMolecular organization of eukaryotic DNA
Molecular organization of eukaryotic DNA
 
Initiation and termination codons , mutation and genetic code
Initiation and termination codons , mutation and genetic codeInitiation and termination codons , mutation and genetic code
Initiation and termination codons , mutation and genetic code
 
Genetic code
Genetic codeGenetic code
Genetic code
 
Gene structure and expression
Gene structure and expressionGene structure and expression
Gene structure and expression
 
Dna synthesis & sequencing
Dna synthesis & sequencingDna synthesis & sequencing
Dna synthesis & sequencing
 
Dna finger printing
Dna finger printingDna finger printing
Dna finger printing
 
gene cloning principles an technique
gene cloning principles an techniquegene cloning principles an technique
gene cloning principles an technique
 
construction of genomicc dna libraries
construction of genomicc dna librariesconstruction of genomicc dna libraries
construction of genomicc dna libraries
 
dna fingerprinting powerpoint
dna fingerprinting powerpointdna fingerprinting powerpoint
dna fingerprinting powerpoint
 
dna sequencing methods
 dna sequencing methods dna sequencing methods
dna sequencing methods
 
choice of vectors
 choice of vectors choice of vectors
choice of vectors
 
restriction enzymes
restriction enzymesrestriction enzymes
restriction enzymes
 
POLYMERASE CHAIN REACTION ( PCR)
POLYMERASE CHAIN REACTION ( PCR)POLYMERASE CHAIN REACTION ( PCR)
POLYMERASE CHAIN REACTION ( PCR)
 

Último

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 ConsultingTechSoup
 
Sanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfSanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfsanyamsingh5019
 
mini mental status format.docx
mini    mental       status     format.docxmini    mental       status     format.docx
mini mental status format.docxPoojaSen20
 
Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17Celine George
 
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 . pdfQucHHunhnh
 
The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13Steve Thomason
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxiammrhaywood
 
Separation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesSeparation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesFatimaKhan178732
 
Organic Name Reactions for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions  for the students and aspirants of Chemistry12th.pptxOrganic Name Reactions  for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions for the students and aspirants of Chemistry12th.pptxVS Mahajan Coaching Centre
 
Measures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeMeasures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeThiyagu K
 
A Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformA Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformChameera Dedduwage
 
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...Krashi Coaching
 
Introduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The BasicsIntroduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The BasicsTechSoup
 
Mastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionMastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionSafetyChain Software
 
Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphThiyagu K
 
Interactive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationInteractive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationnomboosow
 

Último (20)

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
 
Sanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfSanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdf
 
Advance Mobile Application Development class 07
Advance Mobile Application Development class 07Advance Mobile Application Development class 07
Advance Mobile Application Development class 07
 
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
 
mini mental status format.docx
mini    mental       status     format.docxmini    mental       status     format.docx
mini mental status format.docx
 
Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17
 
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
 
The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13The Most Excellent Way | 1 Corinthians 13
The Most Excellent Way | 1 Corinthians 13
 
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptxINDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
 
Separation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and ActinidesSeparation of Lanthanides/ Lanthanides and Actinides
Separation of Lanthanides/ Lanthanides and Actinides
 
Organic Name Reactions for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions  for the students and aspirants of Chemistry12th.pptxOrganic Name Reactions  for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions for the students and aspirants of Chemistry12th.pptx
 
Measures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeMeasures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and Mode
 
A Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy ReformA Critique of the Proposed National Education Policy Reform
A Critique of the Proposed National Education Policy Reform
 
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
Kisan Call Centre - To harness potential of ICT in Agriculture by answer farm...
 
Introduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The BasicsIntroduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The Basics
 
Mastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionMastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory Inspection
 
Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot Graph
 
Interactive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communicationInteractive Powerpoint_How to Master effective communication
Interactive Powerpoint_How to Master effective communication
 
Código Creativo y Arte de Software | Unidad 1
Código Creativo y Arte de Software | Unidad 1Código Creativo y Arte de Software | Unidad 1
Código Creativo y Arte de Software | Unidad 1
 

Replication of DNA

  • 2. Content  Introduction  What is replication of DNA ?  Basic rules of DNA replication  Process of DNA replication  Enzymes involved in DNA replication
  • 3. Introduction • In molecular biology DNA replication is the biological process of producing two identical replicas of DNA from one original DNA molecule . • DNA replication was postulated by Watson and Crick after they dicoverd the structure of DNA . • DNA replication is semiconservative . Each srand in the double helix acts as a template for synthesis of a new , complementary . • The process of DNA replication is vital for cell growth , repair , and reproduction in organisms .
  • 4. What is replication of DNA ? • DNA replication is the process by which DNA makes a copy of itself during cell division . • This process takes us from one starting molecule to two daughter molecules , with each newly formed double helix containing one new and one old strand . • DNA found within the nucleus , must be replicated in order to ensure that each new cell receives he correct number of chromosomes. The process of duplication is called DNA replication . • Fundamental process occurring in all cells for copying DNA to transfer the genetic information to daughter cells .
  • 5.
  • 6. Basic rules of DNA replication 1 . Replication is always semiconservative . 2 . Replication begins at the sequences called origins . 3 . DNA synthesis is initiated by short fragments of RNA call primers . 4 . The elongation of DNA strands is always in the 5’ to 3’ direction . 5 . DNA replication can be uni or bidirectional .
  • 7. 6 . Replication is continuous on the leading strand and discontinuous on the lagging strand . 7 . New nucleotide strands are complementary and antiparallel to their template strands . 8 . Replication takes place at very high rates and is astonishingly accurate due to the processes of nucleotide selection , proof reading and repair mechanisms .
  • 8. Process of DNA Replication step 1 :- Replication fork formation  before DNA can be replicated the double stranded molecule must be unzipped into two single strands .  DNA has four base called adenine , thymine , cytosine and guanine that form pairs between the two strands .  in order to unwind DNA these interaction between base pairs must be broken .  these is performed by an enzyme known as DNA helicase .  DNA helicase separate the strands into Y shape known as the replication fork .
  • 9.
  • 10. Step 2 :- Primer binding  The leding strands is the simplest to replicated .  once the DNA strands have been separated , a short piece of RNA called a primer binds to the 3’ end of the strand .  The primer always binds as the starting point for replication .  Primers are generated by the enzyme DNA primase .  DNA polymerase 3’ can only nucleotides to existing strands of DNA .
  • 11.
  • 12. Step 3 :- Elongation  Enzymes known as DNA polymerases are responsible creating the new strands by a process called elongation .  In eukaryotic cells polymerases alpha , delta and epsilon are the primary polymerases involved in DNA replication . Because replication proceeds in the 5’ to 3’ direction on the leading strand , the newly formed strands is continuous .  The lagging strands begins replication by binding with multiple primer .  Each primer is only several bases apart .
  • 13.  DNA polymerase then adds pieces of DNA , called Okazaki fragments , to the strand between primers .  This process of replication is discontinuous as the newly created fragments are disjointed .  Involves the addition of new nucleotides based on complementarity of the templated strands .  The daughter strands is elongated with the binding of more DNA nucleotides .
  • 14.
  • 15. Step 4 :- Termination  Once both the continuous and discontinuous strands are formed , an enzyme called exonuclease removes all RNA primers from the original strands .  These primers are then replaced with appropriate bases .  another enzyme called DNA ligase joins Okazaki fragments together forming a single unified strands .  The ends of the linear DNA presents a problem as DNA polymerase can only add nucleotides in the 5’ to 3’ direction .  Once completed the parent strand and its complementary DNA strands coils into the familiar double helix shape .  In the end replication produces two DNA molecules , each with one strand from the parent molecule and one new strand .
  • 16.
  • 17. Enzyme involve in DNA replication • DNA replication would not occur without enzymes that catalyse various steps in the process .  DNA helicase :-  unwind and separates double stranded as it moves along the DNA .  DNA primase :-  A type of RNA polymerase that generates RNA primers . RNA molecule acts as templates for the starting point of DNA replication .
  • 18.  DNA polymerases :-  Synthesize new DNA molecules by adding nucleotides to leading and lagging DNA strands .  DNA Gyrase :-  unwind and rewinds DNA strands to prevent the DNA from becoming tangled or supercoiled .  DNA ligase :-  joins DNA fragments together by forming phosphodiester bonds between nucleotides .
  • 19.  Single strand binding proteins :-  Keep the DNA single stranded after it has been melted by helicase .  RNA primer :-  RNA primer composed of multiple bases that attached to the template strands to initiate the DNA replication .  Telomerase :-  Finishes off the ends of DNA strands .
  • 20.
  • 21. REFREENCES  Molecular biology by :- P.S Verma & V. K Agraval https://www.thoughtco.com