SlideShare uma empresa Scribd logo
1 de 36
RIBOSOMES
SCHEME
 Introduction
 Definition
 Discovery
 Structure
 Function
Introduction
 Ribosome are small organelles found in
each type of cell i.e.,
 Prokaryotic
 Eukaryotic
 They are the only organelle found in
prokaryotic cell
 They are not membrane bounded
Definition
 Cell organelle consisting of proteins and
RNA and function as protein synthesizer.
A ribosome complex is made up of
different ribosomal subunits
Discovery
 Discovered in 1950 by a Romanian cell
biologist George Palade
 Appeared under microscope as dense
granules
 Can be seen through electron
microscope
Structure
 A ribosome has two main constituent
elements
 Protein = 25-40%
 RNA = 37-62%
 Two main subunits are present i.e.,
 A larger subunit
 A smaller subunit
Structure
PROKARYOTIC SUBUNITS:
 larger subunit = 50 S
 smaller subunit = 30 S
 Total ribosomal complex = 70 S
Structure
EUKARYOTIC SUBUNITS:
 Larger subunit = 60S
 Smaller subunit = 40 S
 Total ribosomal complex = 80 S
 Eukaryotic cell has almost 78 proteins
Ribosom
e
Source
Whole
Ribosom
e
Small
Subuni
t
Large
Subuni
t
E. coli 70S 30S
16S RNA
21 proteins
50S
23S & 5S
RNAs
31 proteins
Rat
cytoplas
m
80S 40S
18S RNA
33 proteins
60S
28S, 5.8S, &5S
RNAs
49 proteins
Structure
 SVEDBERG:
It is the centrifugal unit depending on the
density of the object (and in the cage of
cell, organelles) determining that how
quickly they sink to the depth when
centrifuged
Quantity:
 Quantity of ribosomes vary depend upon
the type of cell e.g.,
 Bacteria = 20,000
 Yeast = 200,000
 Quantity depends upon the physiological
ability of cell to produce proteins
Structure
LARGER SUBUNIT:
 Consists of two RNA strands
 A longer and a shorter strand wrap upon
each other
 Strands are dotted with protein coats
 Proteins often glue RNA strands in their
characteristic shape
Structure
SMALLER SUBUNIT:
 Consists of a single RNAstrand
 It is also covered with a protein coat
 Smaller subunit though smaller than the
larger subunit, is quite enormous than
the normal proteins
Ribosomal subunits:
Location:
Ribosomes can be found either:
 Dispersed freely in the cytosol
 Attatched to the surface of Endoplasmic
Reticulum
Location:
 On the basis of location ribosomes are
divided into two types:
Free ribosomes
Bounded ribosomes
Free Ribosomes
 These ribosomes are found freely
dispersed in the cytosol
 They are involved in the synthesis of
proteins that work inside the cytosol
 They vary in number depending upon
the functionality of the cell types and its
need to synthesize proteins
Bounded Ribosomes:
 They are found attached to the surface
of Endoplasmic reticulum making them
“Rough Endoplasmic Reticulum”
 The proteins assembled in these
ribosomes are either transported to the
outside of the cell or are included in the
cell membrane
Function:
 Main function of ribosomes is the
translation of genetic information
encoded in nucleotide bases of DNAinto
amino acid sequence of proteins.
 This is also known as “gene expression”
Translation
 The two ribosomal subunits join to
translate the mRNA into proteins
 Following are the steps of translation:
Initiation
Elongation
Termination
Initiation
To begin initiation, the
small subunit of a
ribosome attaches to the
mRNA.
The small subunit then moves
along the mRNA until it reaches
the first readable Codon. This
codon always codes for the
amino acid methionine.
The tRNA molecules are the
next to enter. These charged
molecules of RNA bring the
amino acids to the ribosome.
Each tRNA has a triplet coding
sequence that corresponds with
the amino acid it carries along.
The triplet sequence of the
tRNA is complementary to the
triplet codon sequence in the
mRNA.
Each triplet codon sequence in
the mRNA and the tRNA
corresponds to a specific amino
acid.
After the first tRNA moves into
place, the large subunit of the
ribosome attaches to the small
subunit.
The complete ribosome consists
of two sites: petidyl (left)
andaminoacyl (right).
Elongation:
After the first tRNA has
attached to the peptidyl site, a
second tRNA enters the
complete ribosome and
attaches to its complementary
mRNA codon in
the aminoacyl site.
With the two tRNA in place, the
amino acid from
the peptidyl tRNA, moves and
attaches to the tRNA in
the aminoacyl site
No longer bearing an amino
acid, the tRNA from
the peptidyl site leaves the
ribosome
The ribosome then moves along
the strand of mRNA, a new
tRNA, based upon the triplet
coding sequence of the mRNA,
fills the new aminoacylsite.
Again, the growing peptide
chain of amino acids is
transferred from
the petidyl tRNA to the amino
acid of the tRNA in
the aminoacyl site.
The ribosome moves along the
mRNA again, and another
charged (with its amino acid)
tRNA fills theaminoacyl site.
The growing peptide chain is
again transferred from
the peptidyl tRNA to the amino
acid attached to the tRNA in
the aminoacyl site.
This process of peptide
synthesis continues as the
ribosome moves along the
mRNA, and the future protein
grows longer.
Termination:
No tRNA exists that recognizes
the triplet sequence in mRNA
known as a stop codon. Instead,
a release factor enters the
ribsome.
The release factor interferes
with peptide elongation, and the
ribosome moves no further.
The peptide chain is released
from the tRNA and leaves the
ribosome.
With the peptide chain gone, the
ribosome dissociates into its
individual large and small
subunits.
Protein synthesis is now
complete. The peptide chain is
ready to act as a protein or be
combined with other chains to
form larger, polypeptide proteins
Ribosome associated
diseases:
 During overburdening or stress condition
of endoplasmic reticulum and thus
ribosomes present on them function
improperly
 This improper functioning is
characterized by improper folding of
proteins
 As proper characteristic final folding of
proteins determine their functioning
 Improper folding disrupts the normal
functioning of proteins causing a
number of deadly diseases
 Some of such diseases are:
Diabetes
Cystic fibrosis
Neurodegenerative disorders
And other conformational disorders

Mais conteúdo relacionado

Mais procurados (20)

RIBOSOMES SMG
RIBOSOMES   SMGRIBOSOMES   SMG
RIBOSOMES SMG
 
Cell wall
Cell wallCell wall
Cell wall
 
RIBOSOMES
RIBOSOMESRIBOSOMES
RIBOSOMES
 
Ribosomes - Basics
Ribosomes - BasicsRibosomes - Basics
Ribosomes - Basics
 
Ribosome
RibosomeRibosome
Ribosome
 
Nucleous
NucleousNucleous
Nucleous
 
Nuclear ppt3
Nuclear ppt3Nuclear ppt3
Nuclear ppt3
 
Polytene & Lampbrush
Polytene & LampbrushPolytene & Lampbrush
Polytene & Lampbrush
 
3. ultrastructure of prokaryotes
3. ultrastructure of prokaryotes3. ultrastructure of prokaryotes
3. ultrastructure of prokaryotes
 
Cell cycle and cell division
Cell cycle and cell divisionCell cycle and cell division
Cell cycle and cell division
 
Translational Regulation of Development
Translational Regulation of DevelopmentTranslational Regulation of Development
Translational Regulation of Development
 
Nuclear envelope and nuclear lamina
Nuclear envelope and nuclear lamina Nuclear envelope and nuclear lamina
Nuclear envelope and nuclear lamina
 
Ribosome - The Organelle acting as the Protein Synthesis site ..
Ribosome - The Organelle acting as the Protein Synthesis site ..Ribosome - The Organelle acting as the Protein Synthesis site ..
Ribosome - The Organelle acting as the Protein Synthesis site ..
 
Cytoskeleton - microtubules ,microfilaments and intermediate filaments
Cytoskeleton - microtubules ,microfilaments and intermediate filamentsCytoskeleton - microtubules ,microfilaments and intermediate filaments
Cytoskeleton - microtubules ,microfilaments and intermediate filaments
 
Vacuole
VacuoleVacuole
Vacuole
 
Nucleus
NucleusNucleus
Nucleus
 
Ribosomes structure & function
Ribosomes structure & functionRibosomes structure & function
Ribosomes structure & function
 
Ribosome
RibosomeRibosome
Ribosome
 
Cytoplasm
CytoplasmCytoplasm
Cytoplasm
 
Gametogenesis
GametogenesisGametogenesis
Gametogenesis
 

Semelhante a Ribosomes.pptx

Ribosomes Group Presentation PSP1 2021/22
Ribosomes Group Presentation PSP1 2021/22Ribosomes Group Presentation PSP1 2021/22
Ribosomes Group Presentation PSP1 2021/22Madihah Ismail
 
TYPES OF RNA.pptx
TYPES OF RNA.pptxTYPES OF RNA.pptx
TYPES OF RNA.pptxAnandSGiri
 
lec 4 bio اشعة.pptx
lec 4 bio اشعة.pptxlec 4 bio اشعة.pptx
lec 4 bio اشعة.pptxsaraso888
 
Ribosomes- Protein Synthesis
Ribosomes- Protein SynthesisRibosomes- Protein Synthesis
Ribosomes- Protein SynthesisHassan Ahmed Khan
 
Gene expression: Translation and Transcription
Gene expression: Translation and TranscriptionGene expression: Translation and Transcription
Gene expression: Translation and TranscriptionCyra Mae Soreda
 
Sabana karim PG-III Translation Machinery.pptx
Sabana karim PG-III Translation Machinery.pptxSabana karim PG-III Translation Machinery.pptx
Sabana karim PG-III Translation Machinery.pptxmani309693
 
• Define transcription• Define translation• What are the 3 steps.pdf
• Define transcription• Define translation• What are the 3 steps.pdf• Define transcription• Define translation• What are the 3 steps.pdf
• Define transcription• Define translation• What are the 3 steps.pdfarihantelehyb
 
Carbohydrates isomerism of carbohydrakkk
Carbohydrates isomerism of carbohydrakkkCarbohydrates isomerism of carbohydrakkk
Carbohydrates isomerism of carbohydrakkksalmanulfarishmathuk
 
HOW PROTEIN IS MADE USING INFORMATIONS FROM DNA?
HOW PROTEIN IS MADE USING INFORMATIONS FROM DNA?HOW PROTEIN IS MADE USING INFORMATIONS FROM DNA?
HOW PROTEIN IS MADE USING INFORMATIONS FROM DNA?CharileneUgali
 
Translation in prokaryotes central dogma
Translation in prokaryotes central dogmaTranslation in prokaryotes central dogma
Translation in prokaryotes central dogmasahanacm355
 
Lecture 3 (genetic control, cell reproduction)
Lecture 3 (genetic control, cell reproduction)Lecture 3 (genetic control, cell reproduction)
Lecture 3 (genetic control, cell reproduction)Ayub Abdi
 
lecture3geneticcontrolcellreproduction-180702011658.pdf
lecture3geneticcontrolcellreproduction-180702011658.pdflecture3geneticcontrolcellreproduction-180702011658.pdf
lecture3geneticcontrolcellreproduction-180702011658.pdfApdirizaqYuzuf
 
7-Transcription of DNA into mRNA and fuerhermore
7-Transcription of DNA into mRNA and fuerhermore7-Transcription of DNA into mRNA and fuerhermore
7-Transcription of DNA into mRNA and fuerhermoreAisharana18
 
Dna and protein synthesis
Dna and protein synthesisDna and protein synthesis
Dna and protein synthesisPaula Mills
 

Semelhante a Ribosomes.pptx (20)

Ribosome.pptx
 Ribosome.pptx Ribosome.pptx
Ribosome.pptx
 
Ribosomes Group Presentation PSP1 2021/22
Ribosomes Group Presentation PSP1 2021/22Ribosomes Group Presentation PSP1 2021/22
Ribosomes Group Presentation PSP1 2021/22
 
TYPES OF RNA.pptx
TYPES OF RNA.pptxTYPES OF RNA.pptx
TYPES OF RNA.pptx
 
lec 4 bio اشعة.pptx
lec 4 bio اشعة.pptxlec 4 bio اشعة.pptx
lec 4 bio اشعة.pptx
 
Structure of Ribosomes.pdf
Structure of Ribosomes.pdfStructure of Ribosomes.pdf
Structure of Ribosomes.pdf
 
Ultra-structure of Ribosomes and functions
Ultra-structure of Ribosomes and functionsUltra-structure of Ribosomes and functions
Ultra-structure of Ribosomes and functions
 
Ribosomes
RibosomesRibosomes
Ribosomes
 
Ribosomes- Protein Synthesis
Ribosomes- Protein SynthesisRibosomes- Protein Synthesis
Ribosomes- Protein Synthesis
 
protein synthesis
protein synthesisprotein synthesis
protein synthesis
 
Gene expression: Translation and Transcription
Gene expression: Translation and TranscriptionGene expression: Translation and Transcription
Gene expression: Translation and Transcription
 
Sabana karim PG-III Translation Machinery.pptx
Sabana karim PG-III Translation Machinery.pptxSabana karim PG-III Translation Machinery.pptx
Sabana karim PG-III Translation Machinery.pptx
 
• Define transcription• Define translation• What are the 3 steps.pdf
• Define transcription• Define translation• What are the 3 steps.pdf• Define transcription• Define translation• What are the 3 steps.pdf
• Define transcription• Define translation• What are the 3 steps.pdf
 
Carbohydrates isomerism of carbohydrakkk
Carbohydrates isomerism of carbohydrakkkCarbohydrates isomerism of carbohydrakkk
Carbohydrates isomerism of carbohydrakkk
 
HOW PROTEIN IS MADE USING INFORMATIONS FROM DNA?
HOW PROTEIN IS MADE USING INFORMATIONS FROM DNA?HOW PROTEIN IS MADE USING INFORMATIONS FROM DNA?
HOW PROTEIN IS MADE USING INFORMATIONS FROM DNA?
 
Protein synthesis
Protein synthesisProtein synthesis
Protein synthesis
 
Translation in prokaryotes central dogma
Translation in prokaryotes central dogmaTranslation in prokaryotes central dogma
Translation in prokaryotes central dogma
 
Lecture 3 (genetic control, cell reproduction)
Lecture 3 (genetic control, cell reproduction)Lecture 3 (genetic control, cell reproduction)
Lecture 3 (genetic control, cell reproduction)
 
lecture3geneticcontrolcellreproduction-180702011658.pdf
lecture3geneticcontrolcellreproduction-180702011658.pdflecture3geneticcontrolcellreproduction-180702011658.pdf
lecture3geneticcontrolcellreproduction-180702011658.pdf
 
7-Transcription of DNA into mRNA and fuerhermore
7-Transcription of DNA into mRNA and fuerhermore7-Transcription of DNA into mRNA and fuerhermore
7-Transcription of DNA into mRNA and fuerhermore
 
Dna and protein synthesis
Dna and protein synthesisDna and protein synthesis
Dna and protein synthesis
 

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
 
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
 
Inhibitors of transcription.pptx
Inhibitors of transcription.pptxInhibitors of transcription.pptx
Inhibitors of transcription.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
 
Transcription in Prokaryotes.pptx
Transcription in Prokaryotes.pptxTranscription in Prokaryotes.pptx
Transcription in Prokaryotes.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
 

Último

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
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxiammrhaywood
 
Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)eniolaolutunde
 
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
 
internship ppt on smartinternz platform as salesforce developer
internship ppt on smartinternz platform as salesforce developerinternship ppt on smartinternz platform as salesforce developer
internship ppt on smartinternz platform as salesforce developerunnathinaik
 
Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17Celine George
 
Final demo Grade 9 for demo Plan dessert.pptx
Final demo Grade 9 for demo Plan dessert.pptxFinal demo Grade 9 for demo Plan dessert.pptx
Final demo Grade 9 for demo Plan dessert.pptxAvyJaneVismanos
 
Employee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptxEmployee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptxNirmalaLoungPoorunde1
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Educationpboyjonauth
 
Presiding Officer Training module 2024 lok sabha elections
Presiding Officer Training module 2024 lok sabha electionsPresiding Officer Training module 2024 lok sabha elections
Presiding Officer Training module 2024 lok sabha electionsanshu789521
 
Science lesson Moon for 4th quarter lesson
Science lesson Moon for 4th quarter lessonScience lesson Moon for 4th quarter lesson
Science lesson Moon for 4th quarter lessonJericReyAuditor
 
Crayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon ACrayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon AUnboundStockton
 
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...Marc Dusseiller Dusjagr
 
Biting mechanism of poisonous snakes.pdf
Biting mechanism of poisonous snakes.pdfBiting mechanism of poisonous snakes.pdf
Biting mechanism of poisonous snakes.pdfadityarao40181
 
How to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptxHow to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptxmanuelaromero2013
 
_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting Data_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting DataJhengPantaleon
 
Sanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfSanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfsanyamsingh5019
 
Painted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of IndiaPainted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of IndiaVirag Sontakke
 

Último (20)

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
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
 
Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)Software Engineering Methodologies (overview)
Software Engineering Methodologies (overview)
 
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
 
internship ppt on smartinternz platform as salesforce developer
internship ppt on smartinternz platform as salesforce developerinternship ppt on smartinternz platform as salesforce developer
internship ppt on smartinternz platform as salesforce developer
 
Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17
 
Final demo Grade 9 for demo Plan dessert.pptx
Final demo Grade 9 for demo Plan dessert.pptxFinal demo Grade 9 for demo Plan dessert.pptx
Final demo Grade 9 for demo Plan dessert.pptx
 
Employee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptxEmployee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptx
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Education
 
Presiding Officer Training module 2024 lok sabha elections
Presiding Officer Training module 2024 lok sabha electionsPresiding Officer Training module 2024 lok sabha elections
Presiding Officer Training module 2024 lok sabha elections
 
Science lesson Moon for 4th quarter lesson
Science lesson Moon for 4th quarter lessonScience lesson Moon for 4th quarter lesson
Science lesson Moon for 4th quarter lesson
 
Crayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon ACrayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon A
 
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
 
Biting mechanism of poisonous snakes.pdf
Biting mechanism of poisonous snakes.pdfBiting mechanism of poisonous snakes.pdf
Biting mechanism of poisonous snakes.pdf
 
How to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptxHow to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptx
 
_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting Data_Math 4-Q4 Week 5.pptx Steps in Collecting Data
_Math 4-Q4 Week 5.pptx Steps in Collecting Data
 
Sanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdfSanyam Choudhary Chemistry practical.pdf
Sanyam Choudhary Chemistry practical.pdf
 
Painted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of IndiaPainted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of India
 
Model Call Girl in Bikash Puri Delhi reach out to us at 🔝9953056974🔝
Model Call Girl in Bikash Puri  Delhi reach out to us at 🔝9953056974🔝Model Call Girl in Bikash Puri  Delhi reach out to us at 🔝9953056974🔝
Model Call Girl in Bikash Puri Delhi reach out to us at 🔝9953056974🔝
 
9953330565 Low Rate Call Girls In Rohini Delhi NCR
9953330565 Low Rate Call Girls In Rohini  Delhi NCR9953330565 Low Rate Call Girls In Rohini  Delhi NCR
9953330565 Low Rate Call Girls In Rohini Delhi NCR
 

Ribosomes.pptx

  • 2. SCHEME  Introduction  Definition  Discovery  Structure  Function
  • 3. Introduction  Ribosome are small organelles found in each type of cell i.e.,  Prokaryotic  Eukaryotic  They are the only organelle found in prokaryotic cell  They are not membrane bounded
  • 4. Definition  Cell organelle consisting of proteins and RNA and function as protein synthesizer. A ribosome complex is made up of different ribosomal subunits
  • 5. Discovery  Discovered in 1950 by a Romanian cell biologist George Palade  Appeared under microscope as dense granules  Can be seen through electron microscope
  • 6. Structure  A ribosome has two main constituent elements  Protein = 25-40%  RNA = 37-62%  Two main subunits are present i.e.,  A larger subunit  A smaller subunit
  • 7. Structure PROKARYOTIC SUBUNITS:  larger subunit = 50 S  smaller subunit = 30 S  Total ribosomal complex = 70 S
  • 8. Structure EUKARYOTIC SUBUNITS:  Larger subunit = 60S  Smaller subunit = 40 S  Total ribosomal complex = 80 S  Eukaryotic cell has almost 78 proteins
  • 9. Ribosom e Source Whole Ribosom e Small Subuni t Large Subuni t E. coli 70S 30S 16S RNA 21 proteins 50S 23S & 5S RNAs 31 proteins Rat cytoplas m 80S 40S 18S RNA 33 proteins 60S 28S, 5.8S, &5S RNAs 49 proteins
  • 10. Structure  SVEDBERG: It is the centrifugal unit depending on the density of the object (and in the cage of cell, organelles) determining that how quickly they sink to the depth when centrifuged
  • 11. Quantity:  Quantity of ribosomes vary depend upon the type of cell e.g.,  Bacteria = 20,000  Yeast = 200,000  Quantity depends upon the physiological ability of cell to produce proteins
  • 12. Structure LARGER SUBUNIT:  Consists of two RNA strands  A longer and a shorter strand wrap upon each other  Strands are dotted with protein coats  Proteins often glue RNA strands in their characteristic shape
  • 13.
  • 14. Structure SMALLER SUBUNIT:  Consists of a single RNAstrand  It is also covered with a protein coat  Smaller subunit though smaller than the larger subunit, is quite enormous than the normal proteins
  • 15.
  • 17. Location: Ribosomes can be found either:  Dispersed freely in the cytosol  Attatched to the surface of Endoplasmic Reticulum
  • 18. Location:  On the basis of location ribosomes are divided into two types: Free ribosomes Bounded ribosomes
  • 19. Free Ribosomes  These ribosomes are found freely dispersed in the cytosol  They are involved in the synthesis of proteins that work inside the cytosol  They vary in number depending upon the functionality of the cell types and its need to synthesize proteins
  • 20. Bounded Ribosomes:  They are found attached to the surface of Endoplasmic reticulum making them “Rough Endoplasmic Reticulum”  The proteins assembled in these ribosomes are either transported to the outside of the cell or are included in the cell membrane
  • 21. Function:  Main function of ribosomes is the translation of genetic information encoded in nucleotide bases of DNAinto amino acid sequence of proteins.  This is also known as “gene expression”
  • 22. Translation  The two ribosomal subunits join to translate the mRNA into proteins  Following are the steps of translation: Initiation Elongation Termination
  • 23. Initiation To begin initiation, the small subunit of a ribosome attaches to the mRNA. The small subunit then moves along the mRNA until it reaches the first readable Codon. This codon always codes for the amino acid methionine.
  • 24. The tRNA molecules are the next to enter. These charged molecules of RNA bring the amino acids to the ribosome. Each tRNA has a triplet coding sequence that corresponds with the amino acid it carries along.
  • 25. The triplet sequence of the tRNA is complementary to the triplet codon sequence in the mRNA. Each triplet codon sequence in the mRNA and the tRNA corresponds to a specific amino acid.
  • 26. After the first tRNA moves into place, the large subunit of the ribosome attaches to the small subunit. The complete ribosome consists of two sites: petidyl (left) andaminoacyl (right).
  • 27. Elongation: After the first tRNA has attached to the peptidyl site, a second tRNA enters the complete ribosome and attaches to its complementary mRNA codon in the aminoacyl site. With the two tRNA in place, the amino acid from the peptidyl tRNA, moves and attaches to the tRNA in the aminoacyl site
  • 28. No longer bearing an amino acid, the tRNA from the peptidyl site leaves the ribosome The ribosome then moves along the strand of mRNA, a new tRNA, based upon the triplet coding sequence of the mRNA, fills the new aminoacylsite.
  • 29. Again, the growing peptide chain of amino acids is transferred from the petidyl tRNA to the amino acid of the tRNA in the aminoacyl site. The ribosome moves along the mRNA again, and another charged (with its amino acid) tRNA fills theaminoacyl site.
  • 30. The growing peptide chain is again transferred from the peptidyl tRNA to the amino acid attached to the tRNA in the aminoacyl site. This process of peptide synthesis continues as the ribosome moves along the mRNA, and the future protein grows longer.
  • 31. Termination: No tRNA exists that recognizes the triplet sequence in mRNA known as a stop codon. Instead, a release factor enters the ribsome. The release factor interferes with peptide elongation, and the ribosome moves no further.
  • 32. The peptide chain is released from the tRNA and leaves the ribosome. With the peptide chain gone, the ribosome dissociates into its individual large and small subunits. Protein synthesis is now complete. The peptide chain is ready to act as a protein or be combined with other chains to form larger, polypeptide proteins
  • 33.
  • 34.
  • 35. Ribosome associated diseases:  During overburdening or stress condition of endoplasmic reticulum and thus ribosomes present on them function improperly  This improper functioning is characterized by improper folding of proteins  As proper characteristic final folding of proteins determine their functioning
  • 36.  Improper folding disrupts the normal functioning of proteins causing a number of deadly diseases  Some of such diseases are: Diabetes Cystic fibrosis Neurodegenerative disorders And other conformational disorders