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12 Cards in this Set

  • Front
  • Back
---First Cycle PCR---
Step 1: *-* to separate dsDNA
Step 2: *** of primer
Step 3: *-* to cause *** w/---
Heat to separate dsDNA
Hybridization of primers
Cooldown - DNA synthesis - "heat resistant DNA Polymerase"
Bacterial 'PCR method'
Step 1: *** is cleaved w/***
Step 2: and "*** to be cloned" and *** is added..
1) Cloning vector cleaved w/restriction nuclease.
2) DNA --- DNA Ligase
Bacterial 'PCR method'
Step 3: *1* introduced into bacterial cell.
Step 4: Cells are ***
Step 5: plasmid is *** from.....
3) ds recombinant plasmid
4) Cells are culture
5) purified from lysed bacteria
---Creating Genomic DNA Library---
Step 1) Cut *** & *** *** w/restriction enzyme
Step 2) *** together
1) DNA - plasmid vector
2) Ligate
How is cDNA made?
Step 1) Lyse cells & purify ---
Step 2) *** with --- primer
Step 3) Create *** with ---
1) mRNA
2) Hybridize - poly-T
3) cDNA - Reverse Transcriptase
---Creating Genomic DNA/cDNA Library---
Step 3) *** bacteria with plasmid
Step 4) Grow bacteria w/*** as a ***.
Step 5) *** become part of library
3) Transfect
4) antibiotic resistance --- selectable marker
5) Surviving colonies
How is cDNA made?
Step 4) Degrade *** with ***
Step 5) Synthesize ******* w/-----------
... *** acts as the primer
4) RNA - RNase
5) '2nd cDNA strand' w/"heat resistant DNA Polymerase"
RNA fragment
---Creating cDNA Library---
Step 1) mRNA into ***
Step 2) *** into ***
Step 3) *** inserted into *** ***
1) cDNA
2) cDNA - dsDNA
3) dsDNA - plasmid vector
--- MUSCLE CONTRACTION ---
1) VD *** influx into *** ***.
2) Vesicles empty *** into *** ***
1) Ca2+ - presynaptic
2) acetylcholine - synaptic cleft
--- MUSCLE CONTRACTION ---
3) These bind *** *** receptor
3) nicotinic acetylcholine
--- MUSCLE CONTRACTION ---
4) Lig Gated ***/*** ***/***
5) *** spreads & continues ***-*** coupling
4) Na+/K+ influx/efflux - cytosol
5) Depolarization - excitation-contraction coupling
*** is made with poly-t primer
cDNA