Genetics: Analysis and Principles
6th Edition
ISBN: 9781259616020
Author: Robert J. Brooker Professor Dr.
Publisher: McGraw-Hill Education
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Chapter 19, Problem 28CONQ
In the treatment of cancer, the basis for many types of chemotherapy and radiation therapy is that mutagens are more effective at killing dividing cells than nondividing cells. Explain why. What are possible harmful side effects of chemotherapy and radiation therapy?
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In the treatment of cancer, the basis for many types of chemotherapyand radiation therapy is that mutagens are more effective at killingdividing cells than nondividing cells. Explain why. What are possibleharmful side effects of chemotherapy and radiation therapy?
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Chapter 19 Solutions
Genetics: Analysis and Principles
Ch. 19.1 - 1. A mutation changes a codon that specifies...Ch. 19.1 - A down promoter mutation causes the promoter of a...Ch. 19.1 - 3. A mutation in one gene that reverses the...Ch. 19.1 - Which of the following is an example of a somatic...Ch. 19.2 - Prob. 1COMQCh. 19.3 - Which of the following is not an example of a...Ch. 19.3 - A point mutation could be caused by a....Ch. 19.3 - One way that TNRE may occur involves the formation...Ch. 19.4 - Nitrous acid replaces amino groups with keto...Ch. 19.4 - Prob. 2COMQ
Ch. 19.4 - Prob. 3COMQCh. 19.5 - The function of photolyase is to repair a....Ch. 19.5 - Which of the following DNA repair systems may...Ch. 19.5 - 3. In nucleotide excision repair in E. coli, the...Ch. 19.5 - Prob. 4COMQCh. 19.5 - An advantage of translesion-replicating...Ch. 19 - Is each of the following mutations a transition,...Ch. 19 - Prob. 2CONQCh. 19 - What does a suppressor mutation suppress? What is...Ch. 19 - Prob. 4CONQCh. 19 - X-rays strike a chromosome in a living cell and...Ch. 19 - Prob. 6CONQCh. 19 - Prob. 7CONQCh. 19 - 8. A point mutation occurs in the middle of the...Ch. 19 - Prob. 9CONQCh. 19 - Prob. 10CONQCh. 19 - 11. Is a random mutation more likely to be...Ch. 19 - 12. Which of the following mutations could be...Ch. 19 - Prob. 13CONQCh. 19 - Discuss the consequences of a germ-line versus a...Ch. 19 - Prob. 15CONQCh. 19 - Explain how a mutagen can interfere with DNA...Ch. 19 - What type of mutation (transition, transversion,...Ch. 19 - Explain what happens to the sequence of DNA during...Ch. 19 - Distinguish between spontaneous and induced...Ch. 19 - Prob. 20CONQCh. 19 - Prob. 21CONQCh. 19 - Prob. 22CONQCh. 19 - Trinucleotide repeat expansions (TNREs) are...Ch. 19 - 24. With regard to TNRE, what is meant by the term...Ch. 19 - 25. What is the difference between the mutation...Ch. 19 - Achondroplasia is a rare form of dwarfism. It is...Ch. 19 - Prob. 27CONQCh. 19 - In the treatment of cancer, the basis for many...Ch. 19 - Prob. 29CONQCh. 19 - 30. Which of the following examples is likely to...Ch. 19 - Prob. 31CONQCh. 19 - Prob. 32CONQCh. 19 - Prob. 33CONQCh. 19 - With regard to the repair of double-strand breaks,...Ch. 19 - Prob. 35CONQCh. 19 - Prob. 36CONQCh. 19 - 37. Three common ways to repair changes in DNA...Ch. 19 - Prob. 38CONQCh. 19 - Prob. 39CONQCh. 19 - Explain how the technique of replica plating...Ch. 19 - 2. Outline how you would use the technique of...Ch. 19 - 3. From an experimental point of view, is it...Ch. 19 - Prob. 4EQCh. 19 - Prob. 5EQCh. 19 - 6. Richard Boyce and Paul Howard-Flanders...Ch. 19 - In E. coli, a variety of mutator strains have been...Ch. 19 - 2. Discuss the times in a person’s life when it is...Ch. 19 - A large amount of research is aimed at studying...
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Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, biology and related others by exploring similar questions and additional content below.Similar questions
- The figure below summarizes the results of an experiment evaluating the role of Ku80 gene DNA repair. The Ku80 Knock Out mice were generated by genetically deleting the Ku80 gene and the effects of ionizing radiation on lifespan were evaluated. Briefly explain why Ku80 deletion has the observed effects. What form of DNA damage is causing the reduced lifespan and which repair mechanism appears to be responsible for repair of these lesion in normal mice?arrow_forwardAlthough it is well known that X-rays cause mutations, they are routinely used to diagnose medical problems, including potential tumors, broken bones, and dental cavities. Why is this done? What precautions need to be taken?arrow_forwardWhat are the biggest challenges that mutations pose to oncologists and cancer biologists who seek to find novel cures against cancers?arrow_forward
- In the replica plate experiment, it shows that mutations are random. However, certain environmental stresses (such as high temperature, high salt, and low pH) can increase the mutation rate. QUESTIONS: Does this indicate that mutations are nonrandom, since they increase in response to cell stressors?arrow_forwardMutations in three broad classes of genes have been implicated in the onset of cancer. Can you explain how?arrow_forwardTelomerase is an attractive cancer target since 85% - 90% of tumors express telomerase (while normal cells express little to no telomerase). One paradigm in this model is the “cancer stem cell” hypothesis. Cancer stem cells (or tumor-initiating cells with stem-cell like properties) can self-renew, as well as give rise to heterogeneous tumor cell populations (essentially, they are believed to be responsible for the formation and maintenance of the tumor). If these cells are indeed “stem-like” they also divide more slowly, and presumably express telomerase (like normal stem cells).Do you think a treatment strategy that inhibits telomerase would be effective in treating cancer? How does the cancer stem cell hypothesis complicate or compliment these strategies? Justify your answer.arrow_forward
- Mutagens, when introduced to the body can always cause cancer. Is this statement true? Select the correct response: No. Mutagens do not necessarily, directly equate to the cause of cancer. A cancer is usually caused by a substance called carcinogen that increases the probability of inducing a tumor. Mutagens can be limited to the result of spontaneous or induced mutations that causes changes and/or errors in the coding and reading of the DNA strand and in the genetic make- up of the organism involved. Though some mutagens are considered as carcinogens, not all mutagens can lead to cancer. Yes. The terms can be used interchangeably even in the medical field. Yes. Mutagens does equate to the cause of cancer. A cancer is usually caused by a substance called carcinogen that increases the probability of inducing a tumor. However, mutagens is not only limited to the result of spontaneous or induced mutations that causes changes and/or errors in the coding and reading of the DNA strand and in…arrow_forwardDescribe three possible uses of site-directed mutagenesis.arrow_forwarda. What is a genetic mutation? How do genetic mutations differ fromsomatic mutations? b. What are mutagens? Using examples, describe how chemical andphysical mutagens cause mutations. c. Briefly describe the significance of transposons in inducing d. Discuss the practical aspects of mutations.arrow_forward
- Part a) and b) have already resolved and part c and d tobe resolved. a. What is a genetic mutation? How do genetic mutations differ fromsomatic mutations? b. What are mutagens? Using examples, describe how chemical andphysical mutagens cause mutations. c. Briefly describe the significance of transposons in inducing d. Discuss the practical aspects of mutations.arrow_forwardBecause the degree of DNA methylation appears to be a relatively reliable genetic marker for some forms of cancer, researchers have explored the possibility of altering DNA methylation as a form of cancer therapy. Initial studies indicate that while hypomethylation suppresses the formation of some tumors, other tumors thrive. Why would one expect different cancers to respond differently to either hypomethylation or hypermethylation therapies?arrow_forwardFrom gene expression studies on cancer, you discovered a hypothetical gene called ABCG2 that is overexpressed in human cancer cells. You want to know if this gene is required for cancer cells to survive, but from your efforts at making a traditional gene knock out, you have found that it is required for embryonic development and can't get to the point of doing a cancer experiment. a. How can you redesign the knockout to get past embryonic lethality? b. How would you then use this mouse line to test if ABCG2 is needed for cancer survival?arrow_forward
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