Unit 6: The Cell Cycle and Cancer - Practice Quiz

BTS118 — Cell Biology 60 Questions
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1 Which phase of the cell cycle is mainly associated with cell growth and preparation for DNA replication?

Overview of cell cycle Easy
A. M phase
B. G2 phase
C. S phase
D. G1 phase

2 During which phase of the cell cycle is DNA replicated?

Overview of cell cycle Easy
A. G1 phase
B. M phase
C. S phase
D. G2 phase

3 What is the main result of the cell cycle in a typical somatic cell?

Overview of cell cycle Easy
A. Two genetically similar daughter cells
B. Four genetically different daughter cells
C. One cell with twice the chromosomes
D. Two cells with half the chromosomes

4 Which type of cell division produces gametes such as sperm and eggs?

Mitosis and meiosis Easy
A. Meiosis
B. Binary fission
C. Budding
D. Mitosis

5 How many daughter cells are produced by one round of mitosis?

Mitosis and meiosis Easy
A. Three
B. One
C. Two
D. Four

6 What is a major difference between meiosis and mitosis?

Mitosis and meiosis Easy
A. Meiosis occurs only in bacteria
B. Meiosis produces haploid cells
C. Mitosis always produces four cells
D. Mitosis reduces chromosome number

7 What is the main function of a cell-cycle checkpoint?

Cell cycle control system Easy
A. To digest worn-out organelles
B. To monitor cell-cycle conditions
C. To make proteins for secretion
D. To transport oxygen in blood

8 Which proteins work together to regulate progression through the cell cycle?

Cell cycle control system Easy
A. Keratin and elastin
B. Cyclins and cyclin-dependent kinases
C. Actin and myosin
D. Hemoglobin and collagen

9 What may happen when severe DNA damage is detected at a checkpoint?

Cell cycle control system Easy
A. The cell cycle may stop
B. The DNA becomes invisible
C. The cell always divides faster
D. The chromosomes leave the cell

10 What is the term for programmed cell death?

Programmed cell death Easy
A. Osmosis
B. Necrosis
C. Apoptosis
D. Phagocytosis

11 Which enzymes are central to the execution of apoptosis?

Programmed cell death Easy
A. Amylases
B. Lipases
C. Caspases
D. Ligases

12 How does apoptosis usually affect nearby cells?

Programmed cell death Easy
A. It increases blood glucose
B. It always infects nearby cells
C. It causes immediate tissue swelling
D. It causes little inflammation

13 Cancer is best described as a disease involving:

Cancer and cellular basis of cancer Easy
A. Uncontrolled cell growth
B. Normal tissue repair only
C. Complete loss of cell growth
D. Temporary changes in cell shape

14 A gene that normally helps stop excessive cell division is called a:

Cancer and cellular basis of cancer Easy
A. Transporter gene
B. Tumor-suppressor gene
C. Ribosomal gene
D. Structural gene

15 A mutation that increases cell division can contribute to the formation of a:

Cancer and cellular basis of cancer Easy
A. Tumor
B. Gamete
C. Synapse
D. Red blood cell

16 Which protein is commonly known for promoting apoptosis in response to serious DNA damage?

Key proteins regulating cell death anticancer-agents Easy
A. Tubulin
B. Insulin
C. p53
D. Actin

17 Many anticancer drugs work by targeting rapidly dividing cells. Why?

Key proteins regulating cell death anticancer-agents Easy
A. Cancer cells never use proteins
B. Cancer cells are always larger
C. Cancer cells cannot contain DNA
D. Cancer cells often divide rapidly

18 What does the term malignant mean when describing a tumor?

Concept of malignancy Easy
A. Made only of dead cells
B. Unable to grow or divide
C. Always harmless to the body
D. Able to invade nearby tissues

19 What is metastasis?

Metastasis Easy
A. Removal of a dead cell
B. Spread of cancer to distant sites
C. Formation of a normal tissue
D. Repair of damaged DNA

20 Which body systems can cancer cells use to travel to distant tissues?

Metastasis Easy
A. Bone marrow only
B. Blood and lymphatic systems
C. Digestive enzymes only
D. Skin pores only

21 A cell has completed DNA replication but has not yet entered mitosis. Which phase is it in, and what is its chromosome content relative to the original cell?

Overview of cell cycle Medium
A. S phase; 4n chromosomes and 2C DNA
B. G1 phase; 2n chromosomes and 2C DNA
C. M phase; 4n chromosomes and 4C DNA
D. G2 phase; 2n chromosomes and 4C DNA

22 A population of cells shows a large increase in cells with duplicated DNA but no evidence of chromosome separation. Which cell-cycle transition is most likely blocked?

Overview of cell cycle Medium
A. G1-to-S transition
B. S-to-G2 transition
C. G2-to-M transition
D. M-to-G1 transition

23 A mutation prevents sister chromatids from separating during mitosis. What is the most direct consequence?

Mitosis and meiosis Medium
A. Crossing over increases between sister chromatids
B. Homologous chromosomes fail to pair
C. Daughter cells receive unequal chromosome numbers
D. DNA replication occurs twice before division

24 Why does meiosis produce genetically different haploid cells more effectively than mitosis?

Mitosis and meiosis Medium
A. Mitosis separates homologous chromosomes in two stages
B. Meiosis replicates DNA after every nuclear division
C. Mitosis uses homologous chromosomes during cytokinesis
D. Meiosis includes crossing over and independent assortment

25 A species has chromosomes. How many chromosomes and chromatids are present in a cell at metaphase II of meiosis?

Mitosis and meiosis Medium
A. 8 chromosomes and 16 chromatids
B. 8 chromosomes and 8 chromatids
C. 4 chromosomes and 4 chromatids
D. 4 chromosomes and 8 chromatids

26 A cell with extensive DNA damage continues into S phase because a checkpoint protein is inactive. Which outcome is most likely?

Cell cycle control system Medium
A. Replication may copy damaged DNA and promote mutations
B. The damaged DNA is automatically removed before replication
C. The spindle checkpoint corrects all DNA base-pair errors
D. The cell immediately becomes a mature nondividing cell

27 A drug inhibits cyclin-dependent kinases required for the G1-to-S transition. What change would be expected in treated cells?

Cell cycle control system Medium
A. Cells bypass all restriction points
B. Cells accumulate after chromosome separation
C. Cells accumulate before DNA synthesis
D. Cells increase crossing over during mitosis

28 The spindle assembly checkpoint remains active because one chromosome is not attached correctly to spindle fibers. What does this checkpoint prevent?

Cell cycle control system Medium
A. Replication of centrosomal DNA
B. Formation of the nuclear envelope in G1
C. Activation of mitotic exit
D. Entry into S phase

29 A cell releases cytochrome from its mitochondria and activates initiator caspases. Which process is most likely occurring?

Programmed cell death Medium
A. Necrotic lysis
B. Mitotic cytokinesis
C. Intrinsic apoptosis
D. Autophagic nutrient uptake

30 Which observation best distinguishes apoptosis from uncontrolled necrotic cell death in a tissue sample?

Programmed cell death Medium
A. Cell shrinkage with formation of apoptotic bodies
B. Cell swelling followed by membrane rupture
C. Random release of intracellular enzymes
D. Inflammatory response around damaged cells

31 A death receptor on a cell binds its extracellular ligand and activates caspase-8. Which pathway has been initiated?

Programmed cell death Medium
A. DNA mismatch repair pathway
B. Extrinsic apoptotic pathway
C. Spindle checkpoint pathway
D. Intrinsic apoptotic pathway

32 A cell acquires mutations that activate a growth-promoting signaling protein and inactivate a DNA-damage checkpoint. Why can these mutations cooperate in cancer development?

Cancer and cellular basis of cancer Medium
A. One prevents all mutations while the other causes meiosis
B. Both mutations force cells to undergo immediate apoptosis
C. One increases proliferation while the other reduces protective arrest
D. Both mutations permanently stop the cell cycle

33 A tumor suppressor normally promotes cell-cycle arrest after DNA damage. Loss of this protein would most directly allow which behavior?

Cancer and cellular basis of cancer Medium
A. Reduced sensitivity to all growth factors
B. Proliferation despite damaged DNA
C. Permanent arrest after every replication cycle
D. More accurate chromosome segregation

34 A cancer cell overexpresses the anti-apoptotic protein Bcl-2. Which treatment strategy could promote apoptosis by counteracting this change?

Key proteins regulating cell death anticancer-agents Medium
A. Increase cellular Bcl-2 production
B. Block all caspase activity
C. Use a BH3-mimetic drug
D. Stimulate DNA replication continuously

35 A tumor has a defective p53 pathway. Which anticancer approach may be especially useful if it restores p53 activity or induces cell death independently of p53?

Key proteins regulating cell death anticancer-agents Medium
A. A therapy that prevents immune recognition of tumor cells
B. A therapy that activates p53-dependent arrest or apoptosis
C. A therapy that increases anti-apoptotic protein expression
D. A therapy that permanently inhibits all DNA repair

36 A chemotherapy agent causes DNA damage, but tumor cells survive because they rapidly repair the lesions. Which combination may improve treatment effectiveness?

Key proteins regulating cell death anticancer-agents Medium
A. The damaging agent plus a broad caspase inhibitor
B. The damaging agent plus a cell-cycle-independent growth signal
C. The damaging agent plus a selective DNA-repair inhibitor
D. The damaging agent plus a stronger anti-apoptotic signal

37 Which combination of properties most strongly indicates that a tumor is malignant rather than benign?

Concept of malignancy Medium
A. Uniform cells and limited blood supply
B. Invasion and potential for distant spread
C. Encapsulation and slow expansion
D. Dependence on normal tissue architecture

38 A tumor sample contains highly variable cell sizes, abnormal nuclei, and numerous atypical mitotic figures. What do these findings suggest?

Concept of malignancy Medium
A. Low proliferative activity
B. High cellular differentiation
C. Normal tissue regeneration
D. Cellular anaplasia

39 A carcinoma enters nearby lymphatic vessels and is later detected in regional lymph nodes. Which step of metastasis has occurred?

Metastasis Medium
A. Extravasation followed by primary tumor formation
B. Intravasation followed by lymphatic dissemination
C. Apoptosis followed by tissue regeneration
D. Angiogenesis followed by DNA replication

40 A metastatic tumor cell exits a blood vessel and begins growing in a new organ. Which term describes the exit from the vessel?

Metastasis Medium
A. Extravasation
B. Transformation
C. Intravasation
D. Cytokinesis

41 A cell has completed DNA replication but has not yet entered mitosis. Which statement best describes its chromosome and DNA content relative to G1?

Overview of cell cycle Hard
A. It has the same chromosome number and twice as much DNA.
B. It has twice as many chromosomes and twice as much DNA.
C. It has half as many chromosomes and twice as much DNA.
D. It has twice as many chromosomes and the same DNA content.

42 A diploid organism has . How many chromosomes and chromatids are present in each secondary spermatocyte immediately after meiosis I?

Mitosis and meiosis Hard
A. 8 chromosomes and 16 chromatids
B. 4 chromosomes and 4 chromatids
C. 4 chromosomes and 8 chromatids
D. 8 chromosomes and 8 chromatids

43 Nondisjunction occurs during meiosis II in one cell of a normally disjoining meiotic pair. Which gamete set is expected from that meiosis?

Mitosis and meiosis Hard
A. One , one , and two normal gametes
B. Two and two gametes
C. Two normal and two gametes
D. Four abnormal gametes with identical chromosome gains

44 A mutation prevents inhibitory phosphorylation of Cdk1, but cyclin B synthesis and degradation remain normal. What is the most likely immediate consequence?

Cell cycle control system Hard
A. Permanent arrest in late G1
B. Activation of separase before DNA replication
C. Failure to replicate centrosomal DNA
D. Premature entry into mitosis

45 A cell sustains extensive DNA damage, but p53 is functional and p21 cannot be produced. Which outcome is most likely after the damage signal is detected?

Cell cycle control system Hard
A. Chromosome segregation through premature APC/C activation
B. Reduced checkpoint arrest despite intact p53 signaling
C. G1 arrest through sustained Rb hypophosphorylation
D. Immediate S-phase entry through cyclin E activation

46 A nondegradable securin mutant is expressed in an otherwise normal cell. Which event is most directly blocked?

Cell cycle control system Hard
A. Cyclin D synthesis during early G1
B. Origin licensing during late mitosis
C. Cohesin cleavage at anaphase onset
D. Telomere extension during S phase

47 A cell releases cytochrome after mitochondrial outer-membrane permeabilization, but Apaf-1 is genetically absent. Which response is most likely?

Programmed cell death Hard
A. Efficient apoptosome formation and caspase-9 activation
B. Failure of canonical apoptosome assembly
C. Direct activation of caspase-8 at the plasma membrane
D. Immediate necroptosis caused by caspase-3 activation

48 A tumor cell lacks functional caspase-8 but retains mitochondrial apoptotic signaling. Which death stimulus can still efficiently activate apoptosis through the intrinsic pathway?

Programmed cell death Hard
A. DNA damage causing BAX and BAK activation
B. Fas ligand acting only through DISC formation
C. Death-receptor signaling requiring direct initiator cleavage
D. Extracellular TNF acting only through caspase-8

49 Which observation most strongly distinguishes apoptosis from primary necrosis in cultured cells?

Programmed cell death Hard
A. Early loss of plasma-membrane integrity
B. Caspase activation with membrane blebbing
C. Immediate inflammatory leakage into the medium
D. Cell swelling with uncontrolled enzyme release

50 A mutation activates a receptor tyrosine kinase only when ligand-bound, but a second mutation eliminates its intracellular GTPase-activating protein. What is the likely signaling consequence?

Cancer and cellular basis of cancer Hard
A. Selective inhibition of downstream MAP kinase activity
B. Complete loss of receptor autophosphorylation
C. Shortened duration of RAS signaling
D. Persistent RAS-GTP signaling after activation

51 A cancer cell has constitutively active PI3K and intact PTEN protein that cannot access the plasma membrane. Which prediction is most appropriate?

Cancer and cellular basis of cancer Hard
A. PIP3-dependent survival signaling remains elevated
B. PTEN efficiently reverses all PI3K signaling
C. PI3K activity is restricted to the nucleus
D. AKT activation becomes impossible in every compartment

52 A lymphoma overexpresses the antiapoptotic protein BCL-2 but retains functional BAX, BAK, and caspases. Which treatment strategy most directly restores mitochondrial apoptosis?

Key proteins regulating cell death anticancer-agents Hard
A. A drug that inhibits initiator caspases
B. A BH3-mimetic that neutralizes BCL-2
C. A growth factor that increases BCL-2 transcription
D. A compound that stabilizes mitochondrial membranes

53 A tumor lacks functional p53 but depends on an overactive antiapoptotic BCL-2 family protein. Which agent is most likely to kill it independently of p53 transcriptional activity?

Key proteins regulating cell death anticancer-agents Hard
A. A BH3-mimetic targeting the overactive protein
B. An inhibitor that increases MDM2-mediated p53 degradation
C. A compound that activates p21 transcription
D. A drug requiring p53-mediated PUMA induction

54 A proteasome inhibitor causes accumulation of misfolded proteins and kills a cancer cell with intact apoptotic machinery. Which mechanism best explains selective sensitivity of some tumor cells?

Key proteins regulating cell death anticancer-agents Hard
A. Normal cells cannot activate stress-responsive transcription
B. Tumor cells often have high proteotoxic and secretory stress
C. Tumor cells universally lack all DNA-repair enzymes
D. Proteasome inhibition exclusively blocks mitotic spindle formation

55 Which combination most strongly supports a diagnosis of malignancy rather than merely increased cellular proliferation?

Concept of malignancy Hard
A. Increased cell size with reversible growth arrest
B. Hyperplasia confined to an intact epithelial boundary
C. High mitotic index without tissue invasion
D. Clonal expansion with local invasion and distant spread

56 A tumor remains sharply circumscribed but contains cells with aneuploid genomes and abundant mitoses. Which conclusion is most justified?

Concept of malignancy Hard
A. It is definitely benign because it is circumscribed
B. It cannot contain oncogenic driver mutations
C. It may be biologically aggressive despite limited invasion
D. It is necessarily metastatic because it is aneuploid

57 A carcinoma cell survives in the circulation but fails to form a secondary tumor after extravasation. Which step of the metastatic cascade is most directly defective?

Metastasis Hard
A. Intravasation
B. Colonization of the target tissue
C. Primary-tumor angiogenesis
D. Loss of epithelial adhesion at the primary site

58 Inhibition of epithelial–mesenchymal transition reduces tumor-cell motility but does not affect primary tumor growth. Which metastatic event would be most directly impaired?

Metastasis Hard
A. DNA replication during primary-tumor expansion
B. Basement-membrane invasion and intravasation
C. Telomere maintenance in established tumor cells
D. Antigen presentation by infiltrating lymphocytes

59 A metastatic clone expresses high levels of a matrix-degrading enzyme but cannot adhere to endothelial cells. Which process is most likely compromised?

Metastasis Hard
A. Proteolysis of the primary basement membrane
B. Induction of angiogenesis at the primary tumor
C. Extravasation into a distant tissue
D. Replication of metastatic-cell DNA

60 A cell enters S phase with incompletely licensed replication origins because it bypassed the late-M and G1 licensing window. What is the most likely consequence?

Overview of cell cycle Hard
A. Immediate homolog separation without DNA synthesis
B. Permanent prevention of replication-fork collapse
C. Increased risk of rereplication in the same cycle
D. Guaranteed completion of one-copy genome duplication