Chapter 14: Problem 6
Why are organisms that have a haploid life cycle valuable tools for mutagenesis studies?
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Chapter 14: Problem 6
Why are organisms that have a haploid life cycle valuable tools for mutagenesis studies?
These are the key concepts you need to understand to accurately answer the question.
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Blectrophilic oxidants are known to create the modified base named 7,8 -dihydro- 8 -axoguanine (oxoG) in DNA. Whereas guanine base-pairs with cytosine, oxoG base-pairs with either cytosine or adenine. (a) What are the sources of reactive oxidants within cells that cause this type of base alteration? (b) Drawing on your knowledge of nucleotide chemistry, draw the structure of \(0 \times 0 \mathrm{G},\) and, below it, draw guanine. Opposite guanine, draw cytosine, including the hydrogen bonds that allow these two molecules to base- pair, Does the structure of oxoG, in contrast to guanine, provide any hint as to why it basepairs with adenine? (c) Assume that an unrepaired oxoG lesion is present in the helix of DNA opposite cytosine. Predict the type of mutation that will occur following several rounds of replication. (d) Which DNA repair mechanisms might work to counteract an oxoG lesion? Which of these is likely to be most effective?
Describe a tautomeric shift and how It may lead to a mutation.
Suppose you are studying a DNA repair system, such as the nucleotide excision repair in vitro. By mistake, you add DNA ligase from a tube that has already expired. What would be the result?
It has been noted that most transposons in humans and other organisms are located in noncoding regions of the genomeregions such as introns, pseudogenes, and stretches of particular types of repetitive DNA. There are several ways to interpret this observation. Describe two possible interpretations. Which Interpretation do you favor? Why?
A chemist has synthesized a novel chemical, which he suspects to be a potential mutagen. Name and explain a popular test that can be used to test the mutagenicity of this product in bacteria.
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