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Describe how an extracellular matrix protein is made ( starting with the DNA), its travels ( including all possible modification) and how it gets to its final residence. You can do this using an elaborate drawing with appropriate labels and descriptions.
Determine the significance of the observation that knocking out MyD88 abrogates increases in Factor B and C3a but knocking out of TRIF does not ? Describe in molecular terms.
What causes are responsible for the dispersal of fish across coral reefs.
How would restriction enzymes play a role in having an organism produce a protein that it normally doesn't make.
Describe the detailed structure of DNA, and explain the manner in which this structure replicates itself in both prokaryotes and eukaryotes.
Carbohydrates, proteins and nucleic acids can be thought of as polymers. What is the monomeric unit of each type? For each of these three biomolecules give an example of the monomeric component, and an example of the polymeric form.
Which of the following is the best experimental protocol by which to test the preference of an herbivore for one of two plants.
The Twenty mL of water is added to the Erlenmeyer flask is to previously boiled, deionized water. Since water does absorb CO2 from atmosphere and since CO2 dissolved in water causes it to be slightly acidic,
Define spontaneous generation and who found this idea with animals? who discover his idea for microbes? describe his experiments?
What is the process of movement of carbon dioxide from, for example, your toe to outside the body? What organs, arteries and veins does it pass through?
A particular polypeptide chains folds into an alpha-helix, which extends from the amino acid at position 5 to the amino acid at position 20. Which of the following is most likely to be the amino acid present at position 4?
AA Aa aa Generation 1 250 500 250 Generation 2 750 200 50 Generation 3 900 90 10 (1) Is this population remaining in HW Equilibrium from generation to generation.
In an experiment, you have treated cells with a drug that inhibits the ezymes that place glycosylation trees onto proteins. When you look for you protein, you find it in the rough endoplasmic reticulum but nowhere else. Explain this result.
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