BIOL SCI 215 Lecture Notes - Lecture 13: Gel Electrophoresis, Selectable Marker, Restriction Enzyme

41 views3 pages
Recombinant DNA technologies
Molecular cloning
Recombinant DNA technology
Isolate, study, manipulate genes from any organism
oManipulation is genetic engineering
Key to modern molecular genetics, medicine, and biotechnology
Uses
Isolate genes to better study the proteins they encode, understand their function in
the cell
Isolate and study genes that are causing human diseases - screen drugs, design
rational therapies
Manipulate genes to improve crops, produce useful proteins (e.g. insulin), create
useful bacteria for bioremediation
NOT the same as recombinant chromosomes or cloning (e.g., Dolly)
Methods to find gene that expresses fluorescence in jellyfish
1. Genetic screening - mutagenize jellyfish and breed to find recessive mutations
causing lack of fluorescence and then map that gene to find the gene required for
fluorescence
2. Isolate all genes, insert in bacteria and see which bacteria glow up
Two different ways to amplify an interesting gene
1. Cloning
2. PCR
Cloning
Cut up jellyfish genome
Place one fragment at random each into one plasmid
Place one plasmid in each bacteria
Let bacteria multiply
BUT cannot do “eukaryotic genes → plasmids → bacteria” because bacteria can’t
splice out introns
SO use cDNA
Reverse transcriptase (from retroviruses)
Can create a DNA molecule from an RNA template
Synthesizes 5’ → 3’
Design a primer called oligo-dT (poly-T’s) that anneals to polyA tail on mRNA’s 3’
end
Then DNA polymerase comes and elongates, the new strand, creating cDNA or
complementary DNA: a copy of DNA from RNA
Make cDNA from jellyfish RNA, which will lack introns
Transcription splicing in live jellyfish
Extract jellyfish RNA
Make cDNA “in vitro” (in a test tube)
Use trick to make second DNA strand
Use a plasmid as a vector for delivery. Plasmids can have a high copy number (hundreds
per cell) and are inherited from one generation to another
Each have one ori (Origin of replication)
find more resources at oneclass.com
find more resources at oneclass.com
Unlock document

This preview shows page 1 of the document.
Unlock all 3 pages and 3 million more documents.

Already have an account? Log in

Document Summary

Isolate, study, manipulate genes from any organism: manipulation is genetic engineering. Key to modern molecular genetics, medicine, and biotechnology. Isolate genes to better study the proteins they encode, understand their function in the cell. Isolate and study genes that are causing human diseases - screen drugs, design rational therapies. Manipulate genes to improve crops, produce useful proteins (e. g. insulin), create useful bacteria for bioremediation. Not the same as recombinant chromosomes or cloning (e. g. , dolly) Methods to find gene that expresses fluorescence in jellyfish: genetic screening - mutagenize jellyfish and breed to find recessive mutations causing lack of fluorescence and then map that gene to find the gene required for fluorescence. Isolate all genes, insert in bacteria and see which bacteria glow up. Two different ways to amplify an interesting gene: cloning, pcr. Place one fragment at random each into one plasmid. But cannot do eukaryotic genes plasmids bacteria because bacteria can"t. Can create a dna molecule from an rna template.

Get access

Grade+20% off
$8 USD/m$10 USD/m
Billed $96 USD annually
Grade+
Homework Help
Study Guides
Textbook Solutions
Class Notes
Textbook Notes
Booster Class
40 Verified Answers
Class+
$8 USD/m
Billed $96 USD annually
Class+
Homework Help
Study Guides
Textbook Solutions
Class Notes
Textbook Notes
Booster Class
30 Verified Answers

Related Documents

Related Questions