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cancerped

Course: BIO 7.014, Spring 2012
School: MIT
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Department MIT of Biology 7.013: Introductory Biology - Spring 2005 Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel 7.013 Cancer Pedigree Section Individual A has been diagnosed with familial adenomatous polyposis - a type of colon cancer. Investigation of the individual's family history yields the following pedigree for colon cancer (where the shaded individuals have colon cancer)....

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Department MIT of Biology 7.013: Introductory Biology - Spring 2005 Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel 7.013 Cancer Pedigree Section Individual A has been diagnosed with familial adenomatous polyposis - a type of colon cancer. Investigation of the individual's family history yields the following pedigree for colon cancer (where the shaded individuals have colon cancer). Assume people marrying into this family carry 2 wildtype alleles. A a) Based on the pedigree, what is the mode of inheritance? (X-linked recessive, X-linked dominant, autosomal dominant, autosomal recessive)? How do you know? In order to isolate the disease gene responsible for this type of colon cancer, you look for markers linked to the disease phenotype. You score each family member for the presence of a marker with 4 alleles: 1, 2, 3, and 4. The results are listed below. b) Which marker(s), if any, are linked to the colon cancer phenotype? Briefly explain. One year later you identify the disease gene adneomatous polyposis coli or APC - and you perform an analysis to find the mutations causing colon cancer in this affected family. Using PCR followed sequencing by techniques, a nonsense mutation in the APC gene of Individual A is found. This mutation creates an HpaI restriction site in the gene. Using PCR, you amplify the APC DNA fragment from various tissue samples and perform RFLP analysis with the restriction enzyme HpaI. These digests are run out on an agarose gel shown below. (Use A to define the wild-type allele.) c) In the spaces provided above, fill in the APC genotype for each tissue. d) How do you account for the results in part c? e) At the cellular level, is the cancer phenotype of the mutant APC gene... dominant or recessive? Circle one. In order to study the colon cancer further, you propose making a mouse model for the human disease. The first step is to identify the mouse gene. f) Given the human APC gene and an agarose gel of sized cut mouse genomic DNA, name the technique or process that would allow you to determine if theres a mouse gene similar to the human APC gene. ________________________________________ g) Given you find the mouse gene and are able to create a deletion within it, how could you create a transgenic mouse where some of its cells will have this deletion? 2
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MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelCancer Pedigrees Section AnswersIndividual A has been diagnosed with familial adenomatous polyposis - a typ
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Sp 05 First Section Self-quiz Solutions1) and 2)a) golgi apparatus - stores, modifies, and packages
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Sp 05 Section Self-quiz1) Label the parts of the cell below.Golgi apparatuslysosomemitochondrionn
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Cell Type and Position SectionThe chicken wing (forelimb) develops primarily from a population of mes
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Cell Type and Position SectionThe chicken wing (forelimb) develops primarily from a population of mes
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Sp 05 Chemistry Review Answers1)This is the simplest correct bondingarrangement of the atoms and ch
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Sp 05 Chemistry Review1) Covalent Bonds: Shown on theright is a hypothetical substratemolecule bind
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Development Section AnswersIn sea urchin, the potential difference across the egg cell membrane chang
MIT - BIO - 7.014
MIT Department of Biology 7.013: Introductory Biology - Spring 2005 Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Section on Fertilization and Development(This was a quiz question.)In sea urchin, the potential diff
MIT - BIO - 7.014
MIT Department of Biology 7.013: Introductory Biology - Spring 2005 Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Section Problem: Applications of recombinant DNA technologyHelp! It is a Thursday afternoon, problem
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Solutions to:Applications of recombinant DNA technology-ddG ddA ddT ddC+a)5' CTGAATTACGT 3'b) N
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelSolutions to Genetics Section ProblemsMice Ia) Cross 1: red eyes X white eyes gives all red eyes a likely
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Genetics Section ProblemsFor each set of data below, determine the genotype of the parents in cross 1
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelA.7.013 Section Problem-Immunology IYou would like to generate antibodies against a specific antigen, anti
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelA.7.013 Immunology Section SolutionsYou would like to generate antibodies against a specific antigen, anti
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 IMMUNOLOGY 2C.Match the following statements with the appropriate cell type(s).Choose from: All bo
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelC.7.013 Immunology 2 solutions1) destroy infected body cellsKiller T cells2) specifically bind soluble a
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 LEGO MITOSIS/MEIOSIS SECTIONDIFFERENCES BETWEEN MITOSIS and MEIOSISDifference by categoryMitosisMe
MIT - BIO - 7.014
MIT Department of Biology 7.013: Introductory Biology - Spring 2005 Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 LEGO MITOSIS/MEIOSIS SECTIONDIFFERENCES BETWEEN MITOSIS and MEIOSISDifference by category1. This pr
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelWhites Have Black Twins in In-Vitro Mix-Up AnswersPlease refer to:Bowers, Fergal. "VF mix-up shocks parent
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelWhites Have Black Twins in In-Vitro Mix-UpPlease refer to.Lyall, Sarah. Foreign Desk: "Whites Have Black T
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelSolutions to: 7.013 Neurobiology Section ProblemShown below is a plot of an action potential at a single po
MIT - BIO - 7.014
MIT Department of Biology 7.013: Introductory Biology - Spring 2005 Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Neurobiology SECTIONShown below is a graph of membrane potential as a function of time for an action
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 SECTION NEUROBIOLOGY 2Part Aligand-gated sodium channelsvoltage-gated calcium channelsvoltage-gate
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 SECTION NEUROBIOLOGY 2Part Aligand-gated sodium channelsvoltage-gated calcium channelsvoltage-gate
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Solutions to Linkage & PedigreesProblemI.a) & b) One way to solve this problem is to work out the g
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Section ProblemLinkage & PedigreesThese problems appeared on previous 7.01 exams.I.Alkaptonuria is
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelBiochemistryMolecules and Shapes 7.013 S05(Abstract Representation of Proteins)Shape GameEach group has t
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelBiochemistryMolecules and Shapes 7.013Protein Shape GameEach group has three buckets. Bucket I contains pi
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Solutions to Enzymes/Protein Structurea) i) leu-thr-phe-ala-ser (unchanged)GENERIC ENZYME:ii) trp-t
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelS05 7.013 Section Problem- Enzymes/Protein StructureThere is a class of related enzymes called serine prote
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7 .013 S ECTION P ROBLEMPROTEIN SECRETION AND LOCALIZATIONThe following 4 proteins are found in a yeast ce
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelSolutions to 7.013 Protein Secretion Section Problema) Mutation A deletes the signal sequence in protein 2.
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Section Problem: Recombinant DNA/CloningYou have been given a purified DNA preparation of p7013, a 30
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelSolutions to 7.013 Recombinant DNA/Cloninga) Plasmid p7013 would give a single band at 3000 bp and the tet
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelStem Cell review/CLONING SectionA. True/False: Circle "T" if the statement is true; circle "F" if the state
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelStem Cell review/CLONING SectionA. True/False: Circle "T" if the statement is true; circle "F" if the state
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013Signal Transduction SectionG proteins are involved in signal transduction in many cell types. In the
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013Signal Transduction Section answersG proteins are involved in signal transduction in many cell types.
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 SECTION PROBLEM STEM CELL SOLUTIONSPART A.You are studying the differentiation of cells in the hemato
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013SECTION PROBLEM- STEM CELLSFigure removed due to copyright reasons.Part AYou are studying the diffe
MIT - BIO - 7.014
MIT Department of Biology 7.013: Introductory Biology - Spring 2005 Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelPart 17.013 Central Dogma Section-Replication/Transcription/TranslationShown below is a 240 base pair segm
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette GardelSolutions to 7.013 Central Dogma ProblemsProkaryotic Gene (-galactosidase)a) 5' AAUUGUGAGC.3'b) H3N+-met-
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Section Problem VirusesPoliovirus is a type of picornavirus. Its genome consists of a single (+) stra
MIT - BIO - 7.014
MIT Department of Biology7.013: Introductory Biology - Spring 2005Instructors: Professor Hazel Sive, Professor Tyler Jacks, Dr. Claudette Gardel7.013 Section Problem Viruses SolutionsPoliovirus is a type of picornavirus. Its genome consists of a singl
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