SlideShare a Scribd company logo
1 of 23
PRESENTED BY:
Mousami Jaria
St. George College of Management and Science
MSc Microbiology
Semester 2
STRUCTURE OF DNA,
DNA POLYMORPHISM [A, B, Z
DNA]
INTRODUCTION
 DNA is composed of two polynucleotide
chains twisted around each other in the
form of double helix.
 The double helix looks superficially same
because of the complimentary nature of
the two DNA strands.
 The nucleotide consists of phosphate
joined to a sugar known as
2’deoxyribose to which a base is
attached.
 The sugar is called 2’deoxyribose because there
is no hydroxyl at position 2’.
 The sugar and base alone are called
nucleoside. Adding a phosphate to a
nucleoside creates a nucleotide.
 Nucleotides are joined to each other in
polynucleotide chains through 3’hydroxyl of
2’deoxyribose of one nucleotide and the
phosphate attached to 5’hydroxyl of another
nucleotide.
 This is phophodiester linkage in which the
phosphoryl group between two nucleotides has
one sugar esterified.
 The phosphodiester linkages impart an
inherent polarity to DNA chain. This polarity
is defined by the asymmetry of the
nucleotides and the way they are joined.
 EACH BASE HAS ITS PREFERRED
TAUTOMERIC FORM:
 The bases in DNA are flat heterocyclic rings
consisting of carbon and nitrogen atoms.
 They fall into 2 classes purines and
pyrimidines i.e adenine, guanine, cytosine,
thymine .
 Each of the bases exist in two alternative
tautomeric state states which are in
equillibrium with each other.
 THE TWO STRANDS OF THE DOUBLE HELIX
ARE WOUND AROUND EACH OTHER IN AN
ANTIPARALLEL ORIENTATION:
 The two chains have the same helical geometry
but have opposite 5’ to 3’ orientation.
 Adenine in one chain pair with thymine of other
chain likewise guanine pairing with cytosine.
 THE TWO CHAINS OF DOUBLE HELIX HAVE
COMPLEMENTARY SEQUENCE:
 Pairing between adenine and thymine and
between guanine and cytosine reults in
complementary relationship between the base
sequence on to interwined chains and gives
DNA itself encoding character.
 THE DOUBLE HELIX IS STABILIZED BY BASE
PAIRING AND BASE STACKING:
 The hydrogen bonds between contribute to
thermodynamic stability and specificity of base
pairing.
 Base stacking also contributes to the stability by
hydrophobic effect.
 The hydrophobic surfaces are buried by base
stacking thus minimising the exposure of base
surfaces to water molecules and hence lowering
the free energy.
 BASE CAN FLIP OUT FROM DOUBLE HELIX:
 Individual bases can protrude from double helix by
phenomenon called base flipping.
 Certain enzymes that remove damaged bases do so
with the base in an extrahelical configuration in
which it is flipped out enabling the base to sit
in catalytic cavity of the enzyme.
 THE DOUBLE HELIX HAS MAJOR AND
MINOR GROOVES:
 The narrow angle between the sugars on
one edge of the base pair generates minor
groove and large angle on the other hand
generates major groove.
 The major groove is rich in chemical
information.
 DNA STRANDS CAN SEPARATE (DENATURE)
AND REASSOCIATE:
 The complementary strands of double helix can be
made to come apart by process called
denaturation. But this is reversible.
 However when the heated solutions of denatured
dna cools single strands often meet there
complementary strands.
 The capacity to renature denatured DNA molecules
permits artificial hybrid dna molecules to be
formed.
 The ability to form hybrids between two single
stranded nucleic acids is called hybridization
 THE DOUBLE HELIX EXISTS IN MULTIPLE
CONFORMATIONS:
 X-ray diffractions revealed thet there are A,
B, Z forms of DNA.
 The B form of DNA represents the ideal
structure and forms right handed helix.
 The Z DNA forms a left handed helix .
DNA POLYMORPHISM
• Refined resolution of DNA structure ,based
on X-ray crystallography of short synthetic
pieces of DNA has shown that there is
considerable variance of helical structure of
DNA.
o There are three families of DNA helices:
o A- DNA : Which can readily form within
certain stretches of purines (eg: GAGGGA)
 B DNA: Which is favoured by mixed
sequences( although the exact conformation
depends on the particular nucleotide
sequence)
 Z-DNA: Which is favoured by alternating
pyrimidine –purine steps (EG: CGCGCG).
 The A and B DNA families are right handed
helices, while Z DNA family has a left handed
orientation of helix.
 The different conformations of DNA helix
have important biological functions.
A-DNA:
 A-DNA is one of the possible double helical
structure which DNA can adopt along with
other two biologically active helix
structure(B-DNA, Z-DNA).
 Right handed double helix
 Short and thick compared to B-DNA.
 Occur only in dehydrated sample of DNA, like
those used in crystallography experiments.
 A-DNA was originally identified by X-ray
diffraction analysis of DNA fibres at
75%relative humidity.
 The grooves are not deep as in B-DNA
 Bases are more tilted.
 Base pair turn is 11.
 Rise per base pair is 2.3 angstorm.
B-DNA
 Discovered by Watson and Crick .
 Most common form of DNA.
 DNA molecule consists of 2 helical
polynucleotide chains coiled around common
axis
 Two helices are coiled in such a way so as to
produce 2 interchain spacing or groove.
 Major/wide groove, Minor/ narrow groove.
 .These grooves provides surface with which
proteins ,chemicals, drugs interact.
B-DNA
Z-DNA
 Discovered by Rich, Nordheim and Wang in
1984.
 One of the many possible DNA double helix
structure.
 Left handed double helix structure in zig zag
manner so termed as Z-DNA
 Has anti parallel strand ass in B-DNA.
 Long and thin in comparison to B-DNA.
 Adjacent sugar have alternating orientation.
 In Z-DNA : a. purines: syn conformation
(bases and sugar are near and on same side).
 b. pyrimidines : anti (bases and sugar are
distant , on opposite sides.)
 Only one deep helical groove.
 12 base pairs per turn with axial rise 3.8
angstorm. & angle twist of 60 degree
COMPARISON TABLE
THANK YOU

More Related Content

What's hot

What's hot (20)

Dna repair mechanisms
Dna repair mechanismsDna repair mechanisms
Dna repair mechanisms
 
Various model of DNA replication
Various model of DNA replicationVarious model of DNA replication
Various model of DNA replication
 
repetitive and non repetitive dna.pptx
repetitive and non repetitive dna.pptxrepetitive and non repetitive dna.pptx
repetitive and non repetitive dna.pptx
 
Histone protein
Histone proteinHistone protein
Histone protein
 
Replication In Eukaryotes and Prokaryotes
Replication In Eukaryotes and ProkaryotesReplication In Eukaryotes and Prokaryotes
Replication In Eukaryotes and Prokaryotes
 
Semiconservative replication
Semiconservative replicationSemiconservative replication
Semiconservative replication
 
DNA Denaturation
DNA Denaturation DNA Denaturation
DNA Denaturation
 
Recombinant enzymes
Recombinant enzymesRecombinant enzymes
Recombinant enzymes
 
Rolling Circle Model of DNA Replication
Rolling Circle Model of DNA ReplicationRolling Circle Model of DNA Replication
Rolling Circle Model of DNA Replication
 
Dna supercoiling and role of topoisomerases
Dna supercoiling and role of topoisomerasesDna supercoiling and role of topoisomerases
Dna supercoiling and role of topoisomerases
 
Nucleosomes
NucleosomesNucleosomes
Nucleosomes
 
DNA Denaturation and Renaturation, Cot curves
DNA  Denaturation and Renaturation, Cot curvesDNA  Denaturation and Renaturation, Cot curves
DNA Denaturation and Renaturation, Cot curves
 
MODELS OF REPLICATION
MODELS OF REPLICATIONMODELS OF REPLICATION
MODELS OF REPLICATION
 
Post-Translational Modifications
Post-Translational ModificationsPost-Translational Modifications
Post-Translational Modifications
 
Replicon
RepliconReplicon
Replicon
 
Watson and crick model of dna
Watson and crick model of dnaWatson and crick model of dna
Watson and crick model of dna
 
Restriction Mapping
Restriction MappingRestriction Mapping
Restriction Mapping
 
Prokaryotic replication
Prokaryotic replicationProkaryotic replication
Prokaryotic replication
 
Fidelity of DNA replication
Fidelity of DNA replication Fidelity of DNA replication
Fidelity of DNA replication
 
Dna replication in prokaryotes
Dna replication in prokaryotesDna replication in prokaryotes
Dna replication in prokaryotes
 

Similar to Structure of dna , dna polymorphism

DNa Deoxyribonucleic acid- code of life
DNa Deoxyribonucleic acid-  code of lifeDNa Deoxyribonucleic acid-  code of life
DNa Deoxyribonucleic acid- code of lifeannie160
 
DNA and Forces stabilizes dna structure
DNA and Forces stabilizes dna structureDNA and Forces stabilizes dna structure
DNA and Forces stabilizes dna structureSanjeev Kumar
 
DNA strcture and function
DNA strcture and functionDNA strcture and function
DNA strcture and functionvruddhi desai
 
Molecular organization of eukaryotic DNA
Molecular organization of eukaryotic DNAMolecular organization of eukaryotic DNA
Molecular organization of eukaryotic DNAgohil sanjay bhagvanji
 
Nucleic acid structure and function
Nucleic acid structure and functionNucleic acid structure and function
Nucleic acid structure and functionRoshanKumarMahat
 
Molecular biology
Molecular biologyMolecular biology
Molecular biologyNayab Khan
 
Forces responsible for A-, B- and Z-DNA: Structures, conformations, classific...
Forces responsible for A-, B- and Z-DNA: Structures, conformations, classific...Forces responsible for A-, B- and Z-DNA: Structures, conformations, classific...
Forces responsible for A-, B- and Z-DNA: Structures, conformations, classific...St Xaviers
 
Structure of DNA.pptx
Structure of DNA.pptxStructure of DNA.pptx
Structure of DNA.pptxRASHMI M G
 
Nucleic acids med 2020-2021- l2&3-ayman-s
Nucleic acids  med 2020-2021- l2&3-ayman-sNucleic acids  med 2020-2021- l2&3-ayman-s
Nucleic acids med 2020-2021- l2&3-ayman-sJohn Diggle
 
molecular biology vet biochem for doctors.pdf
molecular biology vet biochem for doctors.pdfmolecular biology vet biochem for doctors.pdf
molecular biology vet biochem for doctors.pdfTatendaMageja
 
The brief structures of DNA
The brief structures of DNAThe brief structures of DNA
The brief structures of DNAZohaib HUSSAIN
 
DNA STRUCTURE AND THEIR DIFFERENT TYPES.pptx
DNA STRUCTURE AND THEIR DIFFERENT TYPES.pptxDNA STRUCTURE AND THEIR DIFFERENT TYPES.pptx
DNA STRUCTURE AND THEIR DIFFERENT TYPES.pptxAngela Abraham
 

Similar to Structure of dna , dna polymorphism (20)

Structure and Synthesis of DNA
Structure and Synthesis of DNAStructure and Synthesis of DNA
Structure and Synthesis of DNA
 
DNa Deoxyribonucleic acid- code of life
DNa Deoxyribonucleic acid-  code of lifeDNa Deoxyribonucleic acid-  code of life
DNa Deoxyribonucleic acid- code of life
 
DNA and Forces stabilizes dna structure
DNA and Forces stabilizes dna structureDNA and Forces stabilizes dna structure
DNA and Forces stabilizes dna structure
 
DNA strcture and function
DNA strcture and functionDNA strcture and function
DNA strcture and function
 
Molecular organization of eukaryotic DNA
Molecular organization of eukaryotic DNAMolecular organization of eukaryotic DNA
Molecular organization of eukaryotic DNA
 
DNA structure
DNA structureDNA structure
DNA structure
 
Deoxyribonucleic Acid (DNA)
Deoxyribonucleic Acid (DNA)Deoxyribonucleic Acid (DNA)
Deoxyribonucleic Acid (DNA)
 
Nucleic acid structure and function
Nucleic acid structure and functionNucleic acid structure and function
Nucleic acid structure and function
 
Molecular biology
Molecular biologyMolecular biology
Molecular biology
 
Nucleic acids
Nucleic acids   Nucleic acids
Nucleic acids
 
Forces responsible for A-, B- and Z-DNA: Structures, conformations, classific...
Forces responsible for A-, B- and Z-DNA: Structures, conformations, classific...Forces responsible for A-, B- and Z-DNA: Structures, conformations, classific...
Forces responsible for A-, B- and Z-DNA: Structures, conformations, classific...
 
Structure of DNA.pptx
Structure of DNA.pptxStructure of DNA.pptx
Structure of DNA.pptx
 
Nucleic acids med 2020-2021- l2&3-ayman-s
Nucleic acids  med 2020-2021- l2&3-ayman-sNucleic acids  med 2020-2021- l2&3-ayman-s
Nucleic acids med 2020-2021- l2&3-ayman-s
 
Overview of dna replication (prokaryotic & eukaryotic)
Overview of dna replication (prokaryotic & eukaryotic)Overview of dna replication (prokaryotic & eukaryotic)
Overview of dna replication (prokaryotic & eukaryotic)
 
Genetices
GeneticesGenetices
Genetices
 
STRUCTURE OF DNA.pptx
STRUCTURE OF DNA.pptxSTRUCTURE OF DNA.pptx
STRUCTURE OF DNA.pptx
 
molecular biology vet biochem for doctors.pdf
molecular biology vet biochem for doctors.pdfmolecular biology vet biochem for doctors.pdf
molecular biology vet biochem for doctors.pdf
 
The brief structures of DNA
The brief structures of DNAThe brief structures of DNA
The brief structures of DNA
 
Dna
DnaDna
Dna
 
DNA STRUCTURE AND THEIR DIFFERENT TYPES.pptx
DNA STRUCTURE AND THEIR DIFFERENT TYPES.pptxDNA STRUCTURE AND THEIR DIFFERENT TYPES.pptx
DNA STRUCTURE AND THEIR DIFFERENT TYPES.pptx
 

More from AnuKiruthika

Transcription factors and machinery
Transcription factors and machineryTranscription factors and machinery
Transcription factors and machineryAnuKiruthika
 
Sources of the growth of micro organims
Sources of the growth of micro organimsSources of the growth of micro organims
Sources of the growth of micro organimsAnuKiruthika
 
Solid waste as renewable source of energy
Solid waste as renewable source of energySolid waste as renewable source of energy
Solid waste as renewable source of energyAnuKiruthika
 
Fresh and marine ecosystem
Fresh and marine ecosystemFresh and marine ecosystem
Fresh and marine ecosystemAnuKiruthika
 
Food contamination & food spoilage
Food contamination & food spoilageFood contamination & food spoilage
Food contamination & food spoilageAnuKiruthika
 
Eukaryotic gene expression
Eukaryotic gene expressionEukaryotic gene expression
Eukaryotic gene expressionAnuKiruthika
 
Biodegration of hydrocarbons
Biodegration of hydrocarbonsBiodegration of hydrocarbons
Biodegration of hydrocarbonsAnuKiruthika
 
Bacterial transformation
Bacterial transformationBacterial transformation
Bacterial transformationAnuKiruthika
 

More from AnuKiruthika (20)

Wobble hypothesis
Wobble hypothesisWobble hypothesis
Wobble hypothesis
 
Types of mutation
Types of mutationTypes of mutation
Types of mutation
 
Transcription factors and machinery
Transcription factors and machineryTranscription factors and machinery
Transcription factors and machinery
 
Structure of DNA
Structure of DNAStructure of DNA
Structure of DNA
 
Sources of the growth of micro organims
Sources of the growth of micro organimsSources of the growth of micro organims
Sources of the growth of micro organims
 
Solid waste as renewable source of energy
Solid waste as renewable source of energySolid waste as renewable source of energy
Solid waste as renewable source of energy
 
Organelle genome
Organelle genomeOrganelle genome
Organelle genome
 
Oomycetes
OomycetesOomycetes
Oomycetes
 
Myxomycetes
MyxomycetesMyxomycetes
Myxomycetes
 
Fresh and marine ecosystem
Fresh and marine ecosystemFresh and marine ecosystem
Fresh and marine ecosystem
 
Food packaging
Food packagingFood packaging
Food packaging
 
Food contamination & food spoilage
Food contamination & food spoilageFood contamination & food spoilage
Food contamination & food spoilage
 
Eukaryotic gene expression
Eukaryotic gene expressionEukaryotic gene expression
Eukaryotic gene expression
 
Dna methylation
Dna methylationDna methylation
Dna methylation
 
Biodegration of hydrocarbons
Biodegration of hydrocarbonsBiodegration of hydrocarbons
Biodegration of hydrocarbons
 
Bacterial transformation
Bacterial transformationBacterial transformation
Bacterial transformation
 
Allomyces
AllomycesAllomyces
Allomyces
 
Allergy
AllergyAllergy
Allergy
 
Wobble hypothesis
Wobble hypothesisWobble hypothesis
Wobble hypothesis
 
Types of mutation
Types of mutationTypes of mutation
Types of mutation
 

Recently uploaded

How to setup Pycharm environment for Odoo 17.pptx
How to setup Pycharm environment for Odoo 17.pptxHow to setup Pycharm environment for Odoo 17.pptx
How to setup Pycharm environment for Odoo 17.pptxCeline George
 
ICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxAreebaZafar22
 
ICT role in 21st century education and it's challenges.
ICT role in 21st century education and it's challenges.ICT role in 21st century education and it's challenges.
ICT role in 21st century education and it's challenges.MaryamAhmad92
 
General Principles of Intellectual Property: Concepts of Intellectual Proper...
General Principles of Intellectual Property: Concepts of Intellectual  Proper...General Principles of Intellectual Property: Concepts of Intellectual  Proper...
General Principles of Intellectual Property: Concepts of Intellectual Proper...Poonam Aher Patil
 
COMMUNICATING NEGATIVE NEWS - APPROACHES .pptx
COMMUNICATING NEGATIVE NEWS - APPROACHES .pptxCOMMUNICATING NEGATIVE NEWS - APPROACHES .pptx
COMMUNICATING NEGATIVE NEWS - APPROACHES .pptxannathomasp01
 
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 POSCeline George
 
Fostering Friendships - Enhancing Social Bonds in the Classroom
Fostering Friendships - Enhancing Social Bonds  in the ClassroomFostering Friendships - Enhancing Social Bonds  in the Classroom
Fostering Friendships - Enhancing Social Bonds in the ClassroomPooky Knightsmith
 
Beyond_Borders_Understanding_Anime_and_Manga_Fandom_A_Comprehensive_Audience_...
Beyond_Borders_Understanding_Anime_and_Manga_Fandom_A_Comprehensive_Audience_...Beyond_Borders_Understanding_Anime_and_Manga_Fandom_A_Comprehensive_Audience_...
Beyond_Borders_Understanding_Anime_and_Manga_Fandom_A_Comprehensive_Audience_...Pooja Bhuva
 
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.pptxDenish Jangid
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfagholdier
 
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptxHMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptxmarlenawright1
 
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.pdfPoh-Sun Goh
 
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.pdfAdmir Softic
 
Google Gemini An AI Revolution in Education.pptx
Google Gemini An AI Revolution in Education.pptxGoogle Gemini An AI Revolution in Education.pptx
Google Gemini An AI Revolution in Education.pptxDr. Sarita Anand
 
Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfSherif Taha
 
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...Pooja Bhuva
 
FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024Elizabeth Walsh
 
Salient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsSalient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsKarakKing
 
Python Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docxPython Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docxRamakrishna Reddy Bijjam
 

Recently uploaded (20)

How to setup Pycharm environment for Odoo 17.pptx
How to setup Pycharm environment for Odoo 17.pptxHow to setup Pycharm environment for Odoo 17.pptx
How to setup Pycharm environment for Odoo 17.pptx
 
ICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptx
 
ICT role in 21st century education and it's challenges.
ICT role in 21st century education and it's challenges.ICT role in 21st century education and it's challenges.
ICT role in 21st century education and it's challenges.
 
General Principles of Intellectual Property: Concepts of Intellectual Proper...
General Principles of Intellectual Property: Concepts of Intellectual  Proper...General Principles of Intellectual Property: Concepts of Intellectual  Proper...
General Principles of Intellectual Property: Concepts of Intellectual Proper...
 
COMMUNICATING NEGATIVE NEWS - APPROACHES .pptx
COMMUNICATING NEGATIVE NEWS - APPROACHES .pptxCOMMUNICATING NEGATIVE NEWS - APPROACHES .pptx
COMMUNICATING NEGATIVE NEWS - APPROACHES .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
 
Fostering Friendships - Enhancing Social Bonds in the Classroom
Fostering Friendships - Enhancing Social Bonds  in the ClassroomFostering Friendships - Enhancing Social Bonds  in the Classroom
Fostering Friendships - Enhancing Social Bonds in the Classroom
 
Beyond_Borders_Understanding_Anime_and_Manga_Fandom_A_Comprehensive_Audience_...
Beyond_Borders_Understanding_Anime_and_Manga_Fandom_A_Comprehensive_Audience_...Beyond_Borders_Understanding_Anime_and_Manga_Fandom_A_Comprehensive_Audience_...
Beyond_Borders_Understanding_Anime_and_Manga_Fandom_A_Comprehensive_Audience_...
 
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
 
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
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdf
 
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptxHMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
 
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
 
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
 
Google Gemini An AI Revolution in Education.pptx
Google Gemini An AI Revolution in Education.pptxGoogle Gemini An AI Revolution in Education.pptx
Google Gemini An AI Revolution in Education.pptx
 
Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdf
 
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...
 
FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024
 
Salient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsSalient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functions
 
Python Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docxPython Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docx
 

Structure of dna , dna polymorphism

  • 1. PRESENTED BY: Mousami Jaria St. George College of Management and Science MSc Microbiology Semester 2 STRUCTURE OF DNA, DNA POLYMORPHISM [A, B, Z DNA]
  • 2. INTRODUCTION  DNA is composed of two polynucleotide chains twisted around each other in the form of double helix.  The double helix looks superficially same because of the complimentary nature of the two DNA strands.  The nucleotide consists of phosphate joined to a sugar known as 2’deoxyribose to which a base is attached.
  • 3.
  • 4.  The sugar is called 2’deoxyribose because there is no hydroxyl at position 2’.  The sugar and base alone are called nucleoside. Adding a phosphate to a nucleoside creates a nucleotide.  Nucleotides are joined to each other in polynucleotide chains through 3’hydroxyl of 2’deoxyribose of one nucleotide and the phosphate attached to 5’hydroxyl of another nucleotide.  This is phophodiester linkage in which the phosphoryl group between two nucleotides has one sugar esterified.
  • 5.  The phosphodiester linkages impart an inherent polarity to DNA chain. This polarity is defined by the asymmetry of the nucleotides and the way they are joined.  EACH BASE HAS ITS PREFERRED TAUTOMERIC FORM:  The bases in DNA are flat heterocyclic rings consisting of carbon and nitrogen atoms.  They fall into 2 classes purines and pyrimidines i.e adenine, guanine, cytosine, thymine .
  • 6.  Each of the bases exist in two alternative tautomeric state states which are in equillibrium with each other.  THE TWO STRANDS OF THE DOUBLE HELIX ARE WOUND AROUND EACH OTHER IN AN ANTIPARALLEL ORIENTATION:  The two chains have the same helical geometry but have opposite 5’ to 3’ orientation.  Adenine in one chain pair with thymine of other chain likewise guanine pairing with cytosine.
  • 7.  THE TWO CHAINS OF DOUBLE HELIX HAVE COMPLEMENTARY SEQUENCE:  Pairing between adenine and thymine and between guanine and cytosine reults in complementary relationship between the base sequence on to interwined chains and gives DNA itself encoding character.  THE DOUBLE HELIX IS STABILIZED BY BASE PAIRING AND BASE STACKING:  The hydrogen bonds between contribute to thermodynamic stability and specificity of base pairing.
  • 8.  Base stacking also contributes to the stability by hydrophobic effect.  The hydrophobic surfaces are buried by base stacking thus minimising the exposure of base surfaces to water molecules and hence lowering the free energy.  BASE CAN FLIP OUT FROM DOUBLE HELIX:  Individual bases can protrude from double helix by phenomenon called base flipping.  Certain enzymes that remove damaged bases do so with the base in an extrahelical configuration in which it is flipped out enabling the base to sit
  • 9. in catalytic cavity of the enzyme.  THE DOUBLE HELIX HAS MAJOR AND MINOR GROOVES:  The narrow angle between the sugars on one edge of the base pair generates minor groove and large angle on the other hand generates major groove.  The major groove is rich in chemical information.
  • 10.
  • 11.  DNA STRANDS CAN SEPARATE (DENATURE) AND REASSOCIATE:  The complementary strands of double helix can be made to come apart by process called denaturation. But this is reversible.  However when the heated solutions of denatured dna cools single strands often meet there complementary strands.  The capacity to renature denatured DNA molecules permits artificial hybrid dna molecules to be formed.  The ability to form hybrids between two single stranded nucleic acids is called hybridization
  • 12.  THE DOUBLE HELIX EXISTS IN MULTIPLE CONFORMATIONS:  X-ray diffractions revealed thet there are A, B, Z forms of DNA.  The B form of DNA represents the ideal structure and forms right handed helix.  The Z DNA forms a left handed helix .
  • 13. DNA POLYMORPHISM • Refined resolution of DNA structure ,based on X-ray crystallography of short synthetic pieces of DNA has shown that there is considerable variance of helical structure of DNA. o There are three families of DNA helices: o A- DNA : Which can readily form within certain stretches of purines (eg: GAGGGA)
  • 14.  B DNA: Which is favoured by mixed sequences( although the exact conformation depends on the particular nucleotide sequence)  Z-DNA: Which is favoured by alternating pyrimidine –purine steps (EG: CGCGCG).  The A and B DNA families are right handed helices, while Z DNA family has a left handed orientation of helix.  The different conformations of DNA helix have important biological functions.
  • 15.
  • 16. A-DNA:  A-DNA is one of the possible double helical structure which DNA can adopt along with other two biologically active helix structure(B-DNA, Z-DNA).  Right handed double helix  Short and thick compared to B-DNA.  Occur only in dehydrated sample of DNA, like those used in crystallography experiments.
  • 17.  A-DNA was originally identified by X-ray diffraction analysis of DNA fibres at 75%relative humidity.  The grooves are not deep as in B-DNA  Bases are more tilted.  Base pair turn is 11.  Rise per base pair is 2.3 angstorm.
  • 18. B-DNA  Discovered by Watson and Crick .  Most common form of DNA.  DNA molecule consists of 2 helical polynucleotide chains coiled around common axis  Two helices are coiled in such a way so as to produce 2 interchain spacing or groove.  Major/wide groove, Minor/ narrow groove.  .These grooves provides surface with which proteins ,chemicals, drugs interact.
  • 19. B-DNA
  • 20. Z-DNA  Discovered by Rich, Nordheim and Wang in 1984.  One of the many possible DNA double helix structure.  Left handed double helix structure in zig zag manner so termed as Z-DNA  Has anti parallel strand ass in B-DNA.  Long and thin in comparison to B-DNA.  Adjacent sugar have alternating orientation.
  • 21.  In Z-DNA : a. purines: syn conformation (bases and sugar are near and on same side).  b. pyrimidines : anti (bases and sugar are distant , on opposite sides.)  Only one deep helical groove.  12 base pairs per turn with axial rise 3.8 angstorm. & angle twist of 60 degree