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Protein Synthesis
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Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Aug 10, 2019

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Page 1: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Protein Synthesis

Page 2: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Protein Synthesis

Transcription

Processing

Translation

Page 3: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

TranscriptionDNA used as a template to make pre-mRNA

Page 4: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

1. Transcription factors bind

2. RNA polymerase (transcriptase) binds

3. Strand unwound

Transcription - Initiation

Page 5: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Nucleus

Page 6: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Transcription - Elongation

Page 7: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Transcription - Overview

Creates pre-mRNA

Page 8: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

mRNA Processing

Introns- Non-coding DNA *Unnecessary*

Exons- Coding DNA

5’ cap- guanine

Poly-A tail- adenines

Page 9: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

RNA Splicing

Carried out by spliceosome

made up of several snRNPs (“snurps”)

Removes introns, leaves exons

Page 10: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons
Page 11: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons
Page 12: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Recap

Transcription

Initiation

Elongation

Termination

Pre-mRNA processing

Page 13: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Translation

Process of assembling amino acids into polypeptide

**Variable R side chain changes identity of AA

Page 14: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Initiation

mRNA first binds to tRNA (in cytosol)

carries aa methionine

Both of them then attach to small ribosomal subunit

Finally, larger ribosomal subunit attaches

GTP is energy source

Page 15: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Translation - Initiation

Page 16: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

mRNA moves through ribosome - codons are “read”

tRNA w/ corresponding anticodon brings appropriate aa

tRNA stops temporarily in A site

growing polypeptide shifts from tRNA in P site to tRNA in A site

all tRNA molecules move over one site

Elongation

Page 17: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Translation - Elongation

Page 18: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons
Page 19: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Termination

When stop codon is reached, no aa is brought in

Release factor is used instead

Causes polypeptide to break away, ribosome disassembles; protein folds!

Page 20: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Translation - Termination

Page 21: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Protein Transport Signal WHERE DO PROTEINS GO?

Page 22: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Prokaryotic v. Eukaryotic

Similarities? Differences?

Page 23: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Graded protein synthesis free response on Friday! No notes or outside help. Time limit will be given.

Page 24: Protein Synthesis Presentation - haasapbio.weebly.com · RNA Splicing Carried out by spliceosome made up of several snRNPs (“snurps”) Removes introns, leaves exons

Genetic Mutations POGIL