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Class Notes for CBIO 3400 at University of Georgia (UGA)

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UGACBIO 3400ShenSpring

CBIO 3400 Lecture Notes - Lecture 5: Transfer Rna, Uracil, Thymine

OC11223263 Page
3 Apr 2019
0
Gene expression: focus on eukaryotic transcription: the enzyme rna polymerase opens the dna strands and synthesizes an rna complementary to only one of
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UGACBIO 3400ShenSpring

CBIO 3400 Lecture Notes - Lecture 6: Transferase, Eukaryotic Translation, 3D Cell Culture

OC11223263 Page
7 Apr 2019
0
Regulation starts before the message is completed: rna processing enzymes associate with phosphorylated ctd tail of rna pol ii (loaded on in stages, so
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UGACBIO 3400ShenSpring

CBIO 3400 Lecture Notes - Lecture 10: Secretion, Cell Membrane, Exocytosis

OC11223264 Page
20 Mar 2019
0
Learning objectives: distinguish between constitutive and regulatory secretion, describe the mechanism of secretory vesicle docking and fusion. Exocyto
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UGACBIO 3400ShenSpring

CBIO 3400 Lecture Notes - Lecture 4: Crispr, Cas9, Base Pair

OC11223264 Page
1 Apr 2019
0
Bacterial adaptive immune system: crispr-cas9 invader immunity: crispr: clustered regularly interspace short palindromic repeat, certain regions in the
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UGACBIO 3400ShenSpring

CBIO 3400 Lecture Notes - Lecture 6: Rna Polymerase Ii, Tata Box, Tata-Binding Protein

OC11223263 Page
7 Apr 2019
0
Transcription: the 3 main steps of eukaryotic transcription: initiation- transcription factors adhere to the tata box in the promoter signaling rna pol
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UGACBIO 3400ShenSpring

CBIO 3400 Lecture Notes - Lecture 6: Receptor Tyrosine Kinase, Tumor Suppressor Gene, Epidermal Growth Factor Receptor

OC11223264 Page
26 Apr 2019
0
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UGACBIO 3400ShenSpring

CBIO 3400 Lecture Notes - Lecture 8: Eif2, Eif2B, Start Codon

OC11223263 Page
10 Apr 2019
0
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UGACBIO 3400ShenSpring

CBIO 3400 Lecture Notes - Lecture 6: Copii, Amphiphile, Sec61

OC11223264 Page
6 Mar 2019
0
Today"s class: er to golgi traffic, n-glycosylation in the golgi. Paper from breakout will be on exam 3. *review the crosslinking experiment (question
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UGACBIO 3400ShenSpring

CBIO 3400 Lecture 4: CBIO 3400 3:2

OC11223264 Page
2 Mar 2019
0
Learning objectives: explain the structure and function of the er, golgi and lysosomes, describe the dynamic nature of these organelles. *rough er is a
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UGACBIO 3400ShenSpring

CBIO 3400 Lecture Notes - Lecture 6: Vaccinia, Endoplasmic Reticulum, Atp Hydrolysis

OC11223263 Page
15 Feb 2019
0
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UGACBIO 3400ShenSpring

CBIO 3400 Lecture Notes - Lecture 10: Rheb, Knockout Mouse, Sirolimus

OC11223264 Page
30 Jan 2019
0
It"s a g-protein, so we expect it to be regulated via gap and gef. G-protein regulation of mtor: rheb, monomeric g-protein that activates mtor, tsc1/ts
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UGACBIO 3400ShenSpring

CBIO 3400 Lecture 7:

OC11223262 Page
23 Jan 2019
0
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