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Decks in this class (23)

Lecture 8: Membrane transport
Which molecules can must cross me...,
Channels discriminate based on,
Transporters discriminate based on
17  cards
Lecture 9: Protein sorting
Proteins are sorted by several me...,
Signal sequences purpose,
Architecture of the nuclear envel...
15  cards
Lecture 10: Secretory & endocytic pathway
Roadmap of vesicle transport,
Vesicle transport,
Typical transport vesicle life cycle
19  cards
Lecture 11: Cell cycle
Cell divison cycle 3 steps,
Challenges facing a dividing cell,
What would happen if a cell tried...
13  cards
Lecture 12: Mitosis
What are the two parts of the m p...,
Events that set the stage during ...,
What is the centrosome
20  cards
Lecture 14: From one cell to an organism
1. Introduce the field of developmental biology 2. Review cell processes essential for the making of an organism 3. Uncover the value of studying model organisms to illuminate conserved mechanisms in development 4. Understand major events in embryonic development 5. Understand the different approaches to study development
24  cards
Lecture 15: How Cells Become Different
Understand that gene expression can be regulated at many different levels • Understand the concept of promoter • Understand that transcriptional regulators are DNA binding proteins that can act as activators or repressors • Understand how the Lac operon is regulated in bacteria • Appreciate the complexity of eukaryotic transcriptional regulation • Understand the definition of enhancers and their roles in transcriptional regulation
27  cards
Lecture 16: Gene Expression
Understand that gene expression can be regulated at many different levels • Understand the concept of promoter • Understand that transcriptional regulators are DNA binding proteins that can act as activators or repressors • Understand how the Lac operon is regulated in bacteria • Appreciate the complexity of eukaryotic transcriptional regulation • Understand the definition of enhancers and their roles in transcriptional regulation
18  cards
Lecture 17: Gene Expression
• Understand the concepts of nucleosomes and chromatin structure • Understand that chromatin remodeling complexes, histone modification enzymes, and DNA methylation can all regulate chromatin structure, thus affecting gene expression • Understand the concept of a “master regulator” • Understand that cell memory can be mediated by positive feedback, DNA methylation or histone modification • Understand the concept of epigenetic inheritance
11  cards
Lecture 18: Cell Expression
-signal transduction - 4 major signaling systems -delta-Notch signaling nuclear hormone receptors acting as intracellular receptors -cell surface receptors act via intracellular molecules to elicit cellular responses -molecular switches + signal transduction -secondary messengers + feedback regulation
22  cards
L19: Cell Signaling II
What are the two major types of r...,
Three classes of cell surface rec...,
Ion channel coupled receptors
22  cards
L20: Pattern Formation of Drosophila
What are the two differences in e...,
Why do we care about drosophila d...,
Fate map of fly development
33  cards
L21: Early Amphibian Development
Animals share similar body axis a...,
Why do we study amphibian frog de...,
Fate map of frog blastula shows g...
26  cards
L22: Morphogenesis
Http morphogenesis,
Epithelial cells,
Mesenchymal cells
20  cards
L23: Stem Cells
Stem cell,
Types of stem cells,
21  cards
L24: Telomeres, Telomerase, and Aging
What are telomeres,
Dna acts as a template for its ow...,
Major steps for dna synthesis p 2
13  cards
L2: Cells & Organelles
Cells vary dramatically in size,
Cells vary dramatically in shape
22  cards
L3: Carbohydrates & Nucleic Acids
1  cards
L4: Protein Structure
0  cards
L5: Protein Function
0  cards
L6: Cytoskeleton & motor proteins
0  cards
L7: Membrane Structure
0  cards
L1: Introduction
What do all living things have in...,
Cell theory 1838,
Where does the diversity of life ...
6  cards

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Bio 1350

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