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Biochemistry
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Gel Electrophoresis
Comments
Question
In a gel filtration column
Options
A. smaller proteins enter the beads more readily
B. large proteins elute first
C. both (a) and (b)
D. large proteins enter the beads more readily
Correct Answer
both (a) and (b)
Gel Electrophoresis problems
Search Results
1. In isoelectric focusing, proteins are separated on the basis of their
Options
A. relative content of positively charged residue only
B. relative content of negatively charged residue only
C. size
D. relative content of positively and negatively charged residue
Show Answer
Scratch Pad
Discuss
Correct Answer: relative content of positively and negatively charged residue
2. The subunit molecular weight as well as the number of subunits in the quaternary structure can be determined by
Options
A. SDS-PAGE electrophoresis
B. gel filtration chromatography
C. combining information from (a)and (b)
D. isoelectric focusing
Show Answer
Scratch Pad
Discuss
Correct Answer: combining information from (a)and (b)
3. In an SDS-PAGE
Options
A. proteins are denatured by the SDS
B. proteins have the same charge-to-mass ratio
C. smaller proteins migrate more rapidly through the gel
D. all of the above
Show Answer
Scratch Pad
Discuss
Correct Answer: all of the above
4. Proteins are separated in an SDS-PAGE experiment on the basis of their
Options
A. positively charged side chains
B. molecular weight
C. negatively charged side chains
D. different isoelectric points
Show Answer
Scratch Pad
Discuss
Correct Answer: molecular weight
5. Electrophoresis of histones and myoglobin under non-denaturing conditions (pH = 7.0) results in
Options
A. both proteins migrate to the anode
B. histones migrate to the anode and myoglobin migrates to the cathode
C. histones migrate to the cathode and myoglobin migrates to the anode
D. both proteins migrate to the cathode
Show Answer
Scratch Pad
Discuss
Correct Answer: histones migrate to the cathode and myoglobin migrates to the anode
6. Proteins can be visualized directly in gels by
Options
A. staining them with the dye
B. using electron microscope only
C. measuring their molecular weight
D. none of these
Show Answer
Scratch Pad
Discuss
Correct Answer: staining them with the dye
7. The nucleophile in serine proteases is
Options
A. Serine
B. water
C. both (a) and (b)
D. Asparagine
Show Answer
Scratch Pad
Discuss
Correct Answer: both (a) and (b)
8. Enzyme-driven metabolic pathways can be made more efficient by
Options
A. concentrating enzymes within specific cellular compartments
B. grouping enzymes into free-floating, multienzyme complexes
C. fixing enzymes into membranes so that they are adjacent to each other
D. All of the above
Show Answer
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Discuss
Correct Answer: All of the above
9. In the enzyme-catalyzed reaction shown below, what will be the effect on substances A, B, C, and D of inactivating the enzyme labeled E2?
A ---(E1)---> B ---(E2)---> C ---(E3)--->
Options
A. A, B, C, and D will all still be produced
B. A, B, and C will still be produced, but not D
C. A and B will still be produced, but not C or D
D. A will still be produced, but not B, C, or D
Show Answer
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Discuss
Correct Answer: A and B will still be produced, but not C or D
10. Before they can react, many molecules need to be destabilized. This state is typically achieved through
Options
A. changing the three-dimensional shape of the molecule
B. oxidizing the molecules by removing electrons
C. changing the reaction from a biosynthetic to a catabolic pathway
D. the input of a small amount of activation energy
Show Answer
Scratch Pad
Discuss
Correct Answer: the input of a small amount of activation energy
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Carbohydrate
Cell Signalling and Transduction
Cell Structure and Compartments
Chromatography
Disease Associated with Immune System
DNA Structure and Replication
Enzymes
FT IR Spectroscopy
Gas Chromatography
Gel Electrophoresis
Genetic Code and Regulation
Genetic Regulation Prokaryotes
Glycolysis
HPLC
Immune Response
Immune System
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Lipid
Membrane Structure and Functions
Minerals
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NMR Spectroscopy
Nucleic Acids
Oxidative Phosphorylation
Photosynthesis and Respiration
Polymerase Chain Reaction
Protein and Nucleic Acid Interactions
Protein Purification
Protein Stability
Protein Structure
Protein Synthesis
Recombinant DNA Technology
RNA Structure
Spectroscopy
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