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MSCI 500 Week 1 Exam Questions and Answers Latest Update 2025 Graded A+

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MSCI 500 Week 1 Exam Questions and Answers Latest Update 2025 Graded A+ Cancer - Answers A genetic disorder characterized by uncontrolled cell growth. Abnormal Differentiation Model - Answers A theory suggesting cancer is due to defects in cell differentiation, causing cells to deviate from their developmental pathways. Viral Causation Model - Answers A theory proposing that cancer is caused by viral infections, though it cannot explain most cancers, especially in the Western world. Carcinogen-Mutagen Model - Answers A model linking carcinogens, such as radiation and chemicals, to cancer, with many acting as mutagens that damage genes. Ames Test - Answers A test developed by Bruce Ames in the 1970s correlating mutagenic compounds with their carcinogenic potential. Somatic Mutations - Answers Mutations occurring in non-reproductive cells that are considered a primary cause of cancer. Oncogenes - Answers Cancer-causing genes derived from proto-oncogenes that can induce cancerous growth when mutated. Proto-oncogenes - Answers Normal genes that can become oncogenes when mutated. src gene - Answers A gene from the Rous Sarcoma Virus that was found to originate from a normal chicken gene (c-src). v-src oncogene - Answers A proto-oncogene from the chicken genome that demonstrates how viruses can convert normal genes into oncogenes. Point mutations - Answers A type of mutation that can activate proto-oncogenes, such as the H-ras oncogene in human cancers. Gene amplification - Answers A process that can activate proto-oncogenes, exemplified by the myc oncogene in certain hematopoietic tumors. Chromosomal translocations - Answers A genetic alteration where the myc gene is fused with immunoglobulin genes, leading to activation of proto-oncogenes. Transfection - Answers A laboratory technique used to introduce genes from tumor cells into normal cells to induce malignant transformation. ras oncogenes - Answers A family of oncogenes identified as critical drivers of transformation in cells. Multistep Tumorigenesis - Answers The process of cancer development involving multiple genetic mutations over time. Collaborative Oncogenes - Answers The concept that multiple oncogenes, such as ras and myc, are needed for full transformation of normal cells. Transgenic mice - Answers Mice genetically modified to study the direct contribution of oncogenes to cancer development. Oncogene - Answers A gene that has the potential to cause cancer due to mutations or overexpression. Proto-oncogene - Answers A normal gene that can become an oncogene due to mutations or other genetic changes. Somatic Mutation - Answers A mutation that occurs in non-reproductive cells, leading to cancer in specific tissues. Carcinogen - Answers Any substance or agent that can cause cancer by inducing mutations. Mutagen - Answers An agent that causes genetic mutations, which can lead to cancer. Epigenetic - Answers Changes in gene expression or cellular behavior that do not involve changes in the DNA sequence. Transfection - Answers A method of introducing DNA into cells, used to identify oncogenes. Point Mutation - Answers A single nucleotide change in DNA that can lead to oncogene activation. Gene Amplification - Answers The process by which a gene's copy number increases, often leading to overexpression of an oncogene. Chromosomal Translocation - Answers A type of mutation where a part of a chromosome is transferred to another chromosome, potentially activating oncogenes. Multistep Tumorigenesis - Answers The idea that cancer develops through a series of genetic mutations over time, rather than a single event. Tumor Suppressor Genes (TSGs) - Answers Genes that prevent cancer rather than promoting it. Cell Hybridization - Answers A method involving fusing tumor cells with normal cells, creating hybrid cells that contain a mixture of the two cell genomes. Dominant Normal Alleles - Answers Normal alleles that likely repress tumorigenic behavior of cancer cells. Retinoblastoma - Answers A childhood eye tumor that led to the identification of the RB gene. RB Gene - Answers A critical tumor suppressor gene located in the q14 band of chromosome 13. Sporadic Retinoblastoma - Answers A form of retinoblastoma characterized by two somatic mutations. Familial Retinoblastoma - Answers A form of retinoblastoma characterized by one inherited mutation and one somatic mutation. Two-hit Hypothesis - Answers The theory that tumorigenesis occurs only when both alleles of a tumor suppressor gene like RB are inactivated. Inactivation of TSGs - Answers Common in tumor genomes, often via null alleles, whereas oncogenes are often hyperactivated. Cell-Physiological Mechanisms - Answers The various ways TSGs control cell proliferation. Inactivation of TSGs - Answers Inactivation of both alleles of a TSG leads to uncontrolled cell division, a hallmark of cancer. RB gene - Answers RB gene became a paradigm for TSGs because its inactivation alone could lead to tumor formation. Inherited mutations in TSGs - Answers Inherited mutations in TSGs predispose individuals to specific types of cancers. RB gene - Answers Retinoblastoma. APC gene - Answers Adenomatous polyposis coli syndrome (predisposing to colon cancer). TP53 gene - Answers Li-Fraumeni syndrome (predisposing to various cancers like sarcomas and carcinomas). Hereditary cancer syndromes - Answers More than 25 hereditary cancer syndromes are linked to inherited mutations in TSGs. Loss of heterozygosity (LOH) - Answers Loss of heterozygosity (LOH) refers to the loss of the normal (wild-type) allele of a TSG, leaving the cell with two mutated copies of the gene. Mechanisms of LOH - Answers In premalignant cells, after one copy of a TSG is mutated, the second functional copy can be lost through mechanisms like chromosomal loss or deletion, or gene duplication that results in a homozygous mutation. Indicator of TSGs - Answers LOH is a key indicator for the presence of TSGs in specific chromosomal regions. Molecular cloning and genetic techniques - Answers Molecular cloning and genetic techniques like LOH analysis are used to identify TSGs. Inactivation of TSGs in tumors - Answers Many human tumors exhibit inactiv

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MSCI 500 Week 1 Exam Questions and Answers Latest Update 2025 Graded A+

Cancer - Answers A genetic disorder characterized by uncontrolled cell growth.

Abnormal Differentiation Model - Answers A theory suggesting cancer is due to defects in cell
differentiation, causing cells to deviate from their developmental pathways.

Viral Causation Model - Answers A theory proposing that cancer is caused by viral infections, though it
cannot explain most cancers, especially in the Western world.

Carcinogen-Mutagen Model - Answers A model linking carcinogens, such as radiation and chemicals, to
cancer, with many acting as mutagens that damage genes.

Ames Test - Answers A test developed by Bruce Ames in the 1970s correlating mutagenic compounds
with their carcinogenic potential.

Somatic Mutations - Answers Mutations occurring in non-reproductive cells that are considered a
primary cause of cancer.

Oncogenes - Answers Cancer-causing genes derived from proto-oncogenes that can induce cancerous
growth when mutated.

Proto-oncogenes - Answers Normal genes that can become oncogenes when mutated.

src gene - Answers A gene from the Rous Sarcoma Virus that was found to originate from a normal
chicken gene (c-src).

v-src oncogene - Answers A proto-oncogene from the chicken genome that demonstrates how viruses
can convert normal genes into oncogenes.

Point mutations - Answers A type of mutation that can activate proto-oncogenes, such as the H-ras
oncogene in human cancers.

Gene amplification - Answers A process that can activate proto-oncogenes, exemplified by the myc
oncogene in certain hematopoietic tumors.

Chromosomal translocations - Answers A genetic alteration where the myc gene is fused with
immunoglobulin genes, leading to activation of proto-oncogenes.

Transfection - Answers A laboratory technique used to introduce genes from tumor cells into normal
cells to induce malignant transformation.

ras oncogenes - Answers A family of oncogenes identified as critical drivers of transformation in cells.

Multistep Tumorigenesis - Answers The process of cancer development involving multiple genetic
mutations over time.

,Collaborative Oncogenes - Answers The concept that multiple oncogenes, such as ras and myc, are
needed for full transformation of normal cells.

Transgenic mice - Answers Mice genetically modified to study the direct contribution of oncogenes to
cancer development.

Oncogene - Answers A gene that has the potential to cause cancer due to mutations or overexpression.

Proto-oncogene - Answers A normal gene that can become an oncogene due to mutations or other
genetic changes.

Somatic Mutation - Answers A mutation that occurs in non-reproductive cells, leading to cancer in
specific tissues.

Carcinogen - Answers Any substance or agent that can cause cancer by inducing mutations.

Mutagen - Answers An agent that causes genetic mutations, which can lead to cancer.

Epigenetic - Answers Changes in gene expression or cellular behavior that do not involve changes in the
DNA sequence.

Transfection - Answers A method of introducing DNA into cells, used to identify oncogenes.

Point Mutation - Answers A single nucleotide change in DNA that can lead to oncogene activation.

Gene Amplification - Answers The process by which a gene's copy number increases, often leading to
overexpression of an oncogene.

Chromosomal Translocation - Answers A type of mutation where a part of a chromosome is transferred
to another chromosome, potentially activating oncogenes.

Multistep Tumorigenesis - Answers The idea that cancer develops through a series of genetic mutations
over time, rather than a single event.

Tumor Suppressor Genes (TSGs) - Answers Genes that prevent cancer rather than promoting it.

Cell Hybridization - Answers A method involving fusing tumor cells with normal cells, creating hybrid
cells that contain a mixture of the two cell genomes.

Dominant Normal Alleles - Answers Normal alleles that likely repress tumorigenic behavior of cancer
cells.

Retinoblastoma - Answers A childhood eye tumor that led to the identification of the RB gene.

RB Gene - Answers A critical tumor suppressor gene located in the q14 band of chromosome 13.

Sporadic Retinoblastoma - Answers A form of retinoblastoma characterized by two somatic mutations.

, Familial Retinoblastoma - Answers A form of retinoblastoma characterized by one inherited mutation
and one somatic mutation.

Two-hit Hypothesis - Answers The theory that tumorigenesis occurs only when both alleles of a tumor
suppressor gene like RB are inactivated.

Inactivation of TSGs - Answers Common in tumor genomes, often via null alleles, whereas oncogenes are
often hyperactivated.

Cell-Physiological Mechanisms - Answers The various ways TSGs control cell proliferation.

Inactivation of TSGs - Answers Inactivation of both alleles of a TSG leads to uncontrolled cell division, a
hallmark of cancer.

RB gene - Answers RB gene became a paradigm for TSGs because its inactivation alone could lead to
tumor formation.

Inherited mutations in TSGs - Answers Inherited mutations in TSGs predispose individuals to specific
types of cancers.

RB gene - Answers Retinoblastoma.

APC gene - Answers Adenomatous polyposis coli syndrome (predisposing to colon cancer).

TP53 gene - Answers Li-Fraumeni syndrome (predisposing to various cancers like sarcomas and
carcinomas).

Hereditary cancer syndromes - Answers More than 25 hereditary cancer syndromes are linked to
inherited mutations in TSGs.

Loss of heterozygosity (LOH) - Answers Loss of heterozygosity (LOH) refers to the loss of the normal
(wild-type) allele of a TSG, leaving the cell with two mutated copies of the gene.

Mechanisms of LOH - Answers In premalignant cells, after one copy of a TSG is mutated, the second
functional copy can be lost through mechanisms like chromosomal loss or deletion, or gene duplication
that results in a homozygous mutation.

Indicator of TSGs - Answers LOH is a key indicator for the presence of TSGs in specific chromosomal
regions.

Molecular cloning and genetic techniques - Answers Molecular cloning and genetic techniques like LOH
analysis are used to identify TSGs.

Inactivation of TSGs in tumors - Answers Many human tumors exhibit inactivation of TSGs, with TSGs
often inactivated even more frequently than oncogenes are activated.

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