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Class Notes for BIOL 200 at McGill University

MCGILLBIOL 200Richard RoyFall

BIOL 200 Lecture Notes - Lecture 5: Proliferating Cell Nuclear Antigen, Okazaki Fragments, Dna Ligase

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18 Sep 2016
34
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MCGILLBIOL 200Richard RoyFall

BIOL 200 Lecture Notes - Lecture 22: 65-Nanometer Process, Branch Point, Ribose

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14 Nov 2016
18
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MCGILLBIOL 200Kenneth HastingsFall

BIOL 200 Lecture 3: BIOL 200 Lec 03

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5 Oct 2017
0
Histone n- and c- terminal tails protrude from nucleosome. Post-translational modi cations take place on histone tails which are modi cations that affe
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MCGILLBIOL 200Kenneth HastingsFall

BIOL 200 Lecture Notes - Lecture 3: Heterochromatin Protein 1, Chromodomain, Histone Code

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29 Nov 2017
0
Lecture 3: chromatin dynamics and the histone code: chromatin dynamics. Nucleosome: middle part of histones interacts with other histones and forming t
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MCGILLBIOL 200Richard RoyFall

BIOL 200 Lecture Notes - Lecture 21: Expressed Sequence Tag, Dna-Binding Domain, Hybridization Probe

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14 Nov 2016
9
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MCGILLBIOL 200Richard RoyFall

BIOL 200 Lecture Notes - Lecture 7: Polymerase Chain Reaction, Molecular Cloning, Bamhi

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14 Nov 2016
6
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MCGILLBIOL 200Richard RoyFall

BIOL 200 Lecture Notes - Lecture 17: Polymerase Chain Reaction, Agarose Gel Electrophoresis, Restriction Fragment Length Polymorphism

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24 Nov 2016
10
Lecture 17 molecular genetics methods ii: coli and bacteriophage lambda are the workhorses of molecular biology. Most higher organisms use similar proc
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MCGILLBIOL 200Kenneth HastingsFall

BIOL 200 Lecture Notes - Lecture 4: Phosphodiester Bond, Nucleic Acid Double Helix, Bamhi

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5 Oct 2017
0
Level of condensation affects level of expression. Experiment with globin in chickens: globe gene is not expressed when the chromatin in the area is co
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MCGILLBIOL 200Richard RoyFall

BIOL 200 Lecture 20: Eukaryotic Transcription I

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14 Nov 2016
7
Eukaryotic transcription only takes place in 3 organelles: All share common features: all are multimeric complexes. Have large & small subunits -- simi
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MCGILLBIOL 200Monique ZetkaWinter

BIOL 200 Lecture Notes - Lecture 9: U2Af2, Snrnp, Spliceosome

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7 Jun 2016
9
Base pairing between pre-mrna, u1 snrna, and u2 snrna is essential for splicing. U1 snrna forms base pair bonding with sequences that are 3" to the 5"
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MCGILLBIOL 200Monique ZetkaFall

BIOL 200 Lecture 7: BIOL 200 Notes up to Midterm

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25 Jan 2017
0
The mrna is translationally dormant because maskin not only binds to eif4e but it binds to the same site on eif4e that would bind to another member of
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MCGILLBIOL 200Kenneth HastingsFall

BIOL 200 Lecture Notes - Lecture 2: Dosage Compensation, Euchromatin, Nucleosome

OC21540572 Page
5 Oct 2017
0
Conservative replication; one has both strands from parents the other has 2 completely new strands. Semi: both have a new strand and old strand. Replic
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