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Textbook Notes for George Espie

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UTMBIO206H5George EspieFall

BIO206H5 Chapter 1: bio206 tut 1

OC23506132 Page
12 Sep 2018
0
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UTMBIO206H5George EspieFall

BIO206H5 Chapter Notes - Chapter 3: Nuclear Membrane, Lysosome, Chloroplast

OC23506132 Page
13 Sep 2018
0
Eu" = true, karyon" = kernel, nut or nucleus: bigger and more elaborate (as compared with prokaryotes, some live as single-celled orgs (e. g. Amoeba, y
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UTMBIO206H5George EspieFall

BIO206H5 Chapter Notes - Chapter 2: Cytosol, Actin, Systematic Chaos

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13 Sep 2018
0
Site of many chemical rxns that are fundamental to the cell"s existence (e. g. manufacture of proteins) Ribosomes : site of protein synthesis", some ar
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UTMBIO206H5George EspieFall

BIO206H5 Chapter Notes - Chapter 6: Dna Mismatch Repair, Okazaki Fragments, Polymerization

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13 Sep 2018
0
This can easily account for the synthesis of one of the two strands of dna at the replication fork, but not the other. No enzyme exists that can work i
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UTMBIO206H5George EspieFall

BIO206H5 Chapter Notes - Chapter 6: Primase, Okazaki Fragments, Telomerase

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13 Sep 2018
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UTMBIO206H5George EspieFall

BIO206H5 Chapter Notes - Chapter 11: Lipid Bilayer, Alpha Helix, Cytosol

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13 Sep 2018
0
The new membrane assembles there is exported to other membranes. This happens when by membrane budding and fusion. Bits of the bilayer pinch off from t
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UTMBIO206H5George EspieFall

BIO206H5 Chapter Notes - Chapter chapter 4: Van Der Waals Force, Hydrogen Bond, Protein Structure

OC23150084 Page
29 Nov 2017
0
Protein is made up of a long chain of amino acids held together by peptide bonds. Long polypeptide chains are very exible since peptide bonds allow fre
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