Unit 4: Major histocompatibility complex; T and B lymphocytes - Practice Quiz

BTS511 — Immunology 60 Questions
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1 What does the abbreviation MHC stand for?

introduction of MHC Easy
A. Membrane Histocompatibility Complex
B. Major Histocompatibility Complex
C. Major Histological Complex
D. Multiple Histocompatibility Cluster

2 In humans, the MHC is also known as the:

introduction of MHC Easy
A. CD system
B. Rh system
C. ABO system
D. HLA system

3 On which human chromosome is the MHC gene complex located?

introduction of MHC Easy
A. Chromosome 2
B. Chromosome 6
C. Chromosome 11
D. Chromosome 17

4 Which cells recognize antigens presented by MHC class I molecules?

types of MHC Easy
A. B lymphocytes
B. CD8+ cytotoxic T cells
C. CD4+ helper T cells
D. Natural killer T cells

5 MHC class II molecules primarily present antigens to which cell type?

types of MHC Easy
A. Neutrophils
B. CD4+ helper T cells
C. CD8+ cytotoxic T cells
D. Red blood cells

6 Which of the following is an example of a human MHC class I gene?

types of MHC Easy
A. HLA-A
B. HLA-DQ
C. HLA-DR
D. HLA-DP

7 MHC class I molecules are expressed on:

cellular distribution of MHC molecules Easy
A. Only B lymphocytes
B. Only dendritic cells
C. Only red blood cells
D. Almost all nucleated cells

8 MHC class II molecules are mainly expressed on:

cellular distribution of MHC molecules Easy
A. Mature red blood cells
B. Antigen-presenting cells
C. All nucleated cells
D. Platelets

9 Which of the following cells does not express MHC class I molecules?

cellular distribution of MHC molecules Easy
A. Skin cells
B. Liver cells
C. Mature red blood cells
D. Macrophages

10 Endogenous (intracellular) antigens are typically presented by which MHC class?

antigen processing and presentation Easy
A. Both classes equally
B. MHC class II
C. Neither class
D. MHC class I

11 Exogenous antigens taken up from outside the cell are processed and presented mainly by:

antigen processing and presentation Easy
A. MHC class II
B. Mitochondria
C. MHC class I
D. Free ribosomes

12 Which cellular organelle degrades endogenous proteins into peptides for MHC class I presentation?

antigen processing and presentation Easy
A. Nucleolus
B. Lysosome
C. Proteasome
D. Golgi apparatus

13 The B cell receptor (BCR) is essentially a membrane-bound form of which molecule?

B cell receptor and activation Easy
A. T-cell receptor
B. MHC class I
C. Immunoglobulin (antibody)
D. Complement protein

14 Which cells provide help to B cells during their activation against protein antigens?

B cell receptor and activation Easy
A. Helper T cells
B. Cytotoxic T cells
C. Red blood cells
D. Neutrophils

15 Upon full activation, B cells differentiate into which antibody-secreting cells?

B cell receptor and activation Easy
A. Kupffer cells
B. Mast cells
C. Plasma cells
D. Dendritic cells

16 Most T-cell receptors (TCRs) are composed of which two polypeptide chains?

T-cell receptors Easy
A. Heavy and light chains
B. Kappa and lambda chains
C. Alpha and beta chains
D. J and D chains

17 Unlike antibodies, the T-cell receptor recognizes antigen only when it is:

T-cell receptors Easy
A. In its free soluble form
B. Presented on an MHC molecule
C. Bound to complement
D. Located inside the nucleus

18 In which organ do T cells undergo maturation?

T-cell maturation Easy
A. Liver
B. Thymus
C. Tonsils
D. Spleen

19 The process that eliminates T cells reacting strongly against self-antigens is called:

thymic selection of T-cells Easy
A. Somatic hypermutation
B. Clonal expansion
C. Negative selection
D. Positive selection

20 In mammals, where does the early maturation of B cells primarily occur?

B-cell maturation Easy
A. Lymph nodes
B. Spleen
C. Thymus
D. Bone marrow

21 A researcher observes that a set of genes on the same chromosome are inherited together as a unit and encode molecules critical for antigen presentation. This inheritance pattern is best described as a:

introduction of MHC Medium
A. MHC isotype
B. MHC idiotype
C. MHC haplotype
D. MHC allotype

22 MHC molecules are highly polymorphic in a population. What is the primary immunological advantage of this polymorphism at the population level?

introduction of MHC Medium
A. It allows a single individual to present all possible peptides
B. It reduces the rate of graft rejection between individuals
C. It ensures the population can collectively present a wide range of pathogen-derived peptides
D. It prevents autoimmune responses in all individuals

23 A peptide of 9 amino acids fits snugly into a closed-ended binding groove of an MHC molecule. This structural feature is characteristic of which MHC class?

types of MHC Medium
A. MHC class I
B. MHC class III
C. Both class I and class II equally
D. MHC class II

24 Which structural comparison correctly distinguishes MHC class I from MHC class II molecules?

types of MHC Medium
A. Both classes contain -microglobulin as a non-covalent subunit
B. Class I has two transmembrane chains, whereas class II has one plus -microglobulin
C. Class I has one transmembrane chain plus -microglobulin, whereas class II has two transmembrane chains
D. Both classes have open-ended peptide-binding grooves

25 A virus infects a hepatocyte (liver cell). Which MHC molecule will most likely present the viral peptides to alert the immune system?

cellular distribution of MHC molecules Medium
A. MHC class II, because it is expressed on all body cells
B. MHC class I, because it is expressed on virtually all nucleated cells
C. Neither, because hepatocytes lack MHC molecules
D. MHC class II, because hepatocytes are antigen-presenting cells

26 Which set of cells constitutively expresses high levels of MHC class II molecules?

cellular distribution of MHC molecules Medium
A. Cytotoxic T cells, NK cells, and platelets
B. Hepatocytes, neurons, and erythrocytes
C. Erythrocytes, platelets, and neurons
D. Dendritic cells, macrophages, and B cells

27 A cytosolic protein is degraded and its peptides are eventually loaded onto MHC class I. Which pathway component is responsible for transporting these peptides into the endoplasmic reticulum?

antigen processing and presentation Medium
A. The invariant chain (Ii)
B. The proteasome
C. HLA-DM
D. TAP (Transporter associated with Antigen Processing)

28 The invariant chain (Ii) associates with newly synthesized MHC class II in the ER. What is its primary function?

antigen processing and presentation Medium
A. It degrades endogenous peptides before loading
B. It stabilizes -microglobulin binding
C. It blocks the peptide-binding groove to prevent premature loading of ER peptides
D. It transports MHC class II directly to the cell surface

29 A macrophage engulfs an extracellular bacterium. Where does the antigenic peptide most likely bind to its presenting MHC molecule?

antigen processing and presentation Medium
A. In the cytosol onto MHC class I
B. In an endosomal/lysosomal compartment onto MHC class II
C. On the cell surface onto MHC class II
D. In the endoplasmic reticulum onto MHC class I

30 The role of HLA-DM in the MHC class II pathway is best described as:

antigen processing and presentation Medium
A. Degrading the invariant chain into CLIP
B. Transporting peptides into the ER
C. Loading peptides onto MHC class I
D. Catalyzing the exchange of CLIP for antigenic peptide

31 The B cell receptor (BCR) itself has a very short cytoplasmic tail and cannot signal alone. Which associated proteins transmit the activation signal into the cell?

B cell receptor and activation Medium
A. chains of the TCR complex
B. CD3 , , and chains
C. Ig- and Ig- (CD79a/CD79b)
D. CD4 and CD8 coreceptors

32 A B cell responds to a protein antigen but requires additional signals to become fully activated and undergo class switching. Which interaction provides this second signal?

B cell receptor and activation Medium
A. Complement C3b binding CR1 on the B cell
B. The BCR cross-linking a polysaccharide antigen
C. MHC class I on the B cell binding the CD8 T cell
D. CD40 on the B cell binding CD40L on an activated helper T cell

33 Thymus-independent type 2 (TI-2) antigens, such as bacterial polysaccharides, activate B cells primarily by:

B cell receptor and activation Medium
A. Presentation of peptides on MHC class II to helper T cells
B. CD40–CD40L engagement with follicular helper T cells
C. Direct binding to the invariant chain
D. Extensive cross-linking of multiple BCRs by repeating epitopes

34 Unlike the B cell receptor, the majority of T-cell receptors recognize antigen only when it is:

T-cell receptors Medium
A. Attached to complement fragments
B. Cross-linked into a large aggregate
C. In its native soluble conformation
D. Presented as a peptide bound to an MHC molecule

35 The CD3 complex is essential for T-cell receptor function. Its main role is to:

T-cell receptors Medium
A. Transduce activation signals through its ITAM-containing chains
B. Serve as a coreceptor binding MHC class II
C. Directly bind the peptide-MHC complex
D. Determine the antigen specificity of the T cell

36 A helper T cell recognizes a peptide-MHC class II complex. Which coreceptor stabilizes this interaction, and what does it bind?

T-cell receptors Medium
A. CD4, which binds a conserved region of MHC class II
B. CD8, which binds the domain of MHC class II
C. CD8, which binds a conserved region of MHC class II
D. CD4, which binds -microglobulin of MHC class I

37 During T-cell maturation in the thymus, a thymocyte that expresses both CD4 and CD8 is at which developmental stage?

T-cell maturation Medium
A. Double-negative (DN) stage
B. Single-positive (SP) stage
C. Double-positive (DP) stage
D. Pre-T stage before TCR rearrangement

38 A double-positive thymocyte whose TCR binds self peptide-MHC with very high affinity is eliminated. This process is called:

thymic selection of T-cells Medium
A. Positive selection
B. Affinity maturation
C. Negative selection
D. Clonal expansion

39 A thymocyte fails to bind any self-MHC molecule with sufficient affinity during positive selection. What is its most likely fate?

thymic selection of T-cells Medium
A. Death by neglect (apoptosis)
B. Export to the periphery as a naïve T cell
C. Maturation into a regulatory T cell
D. Conversion into a B lymphocyte

40 During B-cell development in the bone marrow, successful rearrangement of the heavy-chain gene and expression of the pre-B cell receptor signals the cell to:

B-cell maturation Medium
A. Immediately exit the bone marrow as a mature B cell
B. Undergo negative selection against soluble self-antigens
C. Halt further heavy-chain rearrangement and proliferate before light-chain rearrangement
D. Begin rearranging both heavy and light chains simultaneously

41 A viral protein is synthesized in the cytosol of an infected fibroblast. The proteasome generates peptides that are transported into the ER via TAP. Which combination of events must occur for successful surface presentation?

antigen processing and presentation Hard
A. Peptide association with -microglobulin-free heavy chains at the cell surface
B. Peptide binding to HLA-DM-edited MHC II grooves in late endosomes
C. Peptide loading onto MHC I assisted by tapasin, calreticulin, and ERp57 before Golgi transit
D. Peptide loading onto MHC II after invariant chain degradation in the MIIC compartment

42 A thymocyte expresses a TCR that binds self-peptide-MHC with intermediate affinity in the cortex but with high affinity when encountering the same complex on medullary dendritic cells. What is the fate of this thymocyte?

thymic selection of T-cells Hard
A. Development into a regulatory T cell without further signaling
B. Escape to the periphery as a functional conventional T cell
C. Positive selection into a mature CD8 single-positive cell
D. Negative selection (clonal deletion) in the medulla despite passing positive selection

43 Which structural feature distinguishes the peptide-binding capacity of MHC class II from class I molecules?

types of MHC Hard
A. An open-ended groove formed by and domains binding peptides of 13–25 residues
B. A groove requiring -microglobulin for peptide anchoring
C. A closed groove formed by and domains binding peptides of 8–10 residues
D. A single membrane-spanning chain forming the entire binding cleft

44 A researcher finds a nucleated somatic cell lacking surface MHC class I. Which functional consequence and cellular interaction is most predictable?

cellular distribution of MHC molecules Hard
A. Increased susceptibility to NK-cell killing due to loss of inhibitory 'self' signals
B. Complete resistance to all cytotoxic lymphocyte-mediated lysis
C. Enhanced activation of CD4 helper T cells via unopposed class II presentation
D. Constitutive upregulation of class II to compensate for antigen presentation

45 The diversity of the TCR chain differs from the chain primarily because:

T-cell receptors Hard
A. The locus uses allelic exclusion strictly while permits dual expression
B. The chain uses somatic hypermutation while relies only on VDJ recombination
C. The chain lacks N-nucleotide addition whereas has extensive TdT activity
D. The locus lacks D segments but allows multiple V-J rearrangements, while uses V-D-J with less junctional flexibility

46 A B cell binds a soluble protein antigen but receives no T-cell help. Under most physiological conditions, what is the likely outcome?

B cell receptor and activation Hard
A. Immediate differentiation into long-lived plasma cells
B. Full activation and class switching driven solely by BCR crosslinking
C. Rapid induction of somatic hypermutation independent of germinal centers
D. Anergy or failure to fully activate due to absence of signal 2 (CD40-CD40L)

47 Cross-presentation allows dendritic cells to present exogenous antigen on MHC class I. Which mechanism best explains this pathway?

antigen processing and presentation Hard
A. Escape of internalized antigen into the cytosol for proteasomal processing and TAP-dependent loading
B. Direct fusion of endosomes with the ER-Golgi to load class I without proteasome involvement
C. Invariant chain-mediated delivery of extracellular peptides to class I grooves
D. HLA-DM catalyzed exchange of CLIP for exogenous peptide on class I molecules

48 During T-cell development, the pre-TCR complex signals a critical checkpoint. What does successful pre-TCR signaling accomplish at the DN3 stage?

T-cell maturation Hard
A. Positive selection of CD8 lineage cells in the medulla
B. -selection: allelic exclusion of the locus and proliferation to the DP stage
C. Rearrangement of the locus and surface CD3 downregulation
D. Commitment to the lineage via Notch signaling

49 The transcription factor AIRE is expressed in medullary thymic epithelial cells. A loss-of-function AIRE mutation would most directly cause:

thymic selection of T-cells Hard
A. Loss of MHC class II expression on thymic epithelium
B. Inability to rearrange TCR chains in double-positive cells
C. Complete block of positive selection in the cortex
D. Failure of promiscuous tissue-specific antigen expression, leading to autoimmune polyendocrinopathy

50 MHC polymorphism is concentrated in specific regions of the molecule. Where do the most variable residues cluster and why?

introduction of MHC Hard
A. In the -microglobulin subunit, changing structural stability
B. In the cytoplasmic tail, modulating intracellular trafficking rates
C. In the peptide-binding groove, maximizing the diversity of peptides a population can present
D. In the transmembrane domain, altering signal transduction efficiency

51 An immature B cell in the bone marrow strongly binds a multivalent self-antigen. Which tolerance mechanism is triggered first, and what is a possible rescue outcome?

B-cell maturation Hard
A. Somatic hypermutation in the bone marrow to lower affinity
B. Receptor editing: reactivation of RAG genes to rearrange a new light chain and alter specificity
C. Class switch recombination to IgG to reduce self-reactivity
D. Immediate clonal deletion with no possibility of receptor revision

52 The BCR signaling complex requires accessory molecules for signal transduction. What roles do and (CD79a/b) play?

B cell receptor and activation Hard
A. They form the antigen-binding site alongside the heavy chain
B. They mediate secretion of soluble antibody after plasma cell differentiation
C. They contain ITAM motifs phosphorylated by Lyn to recruit Syk and initiate signaling
D. They provide costimulation equivalent to CD40 during activation

53 The invariant chain (Ii) and CLIP peptide regulate MHC class II loading. What is the function of HLA-DM in this pathway?

antigen processing and presentation Hard
A. It stabilizes empty class I molecules awaiting peptide
B. It transports peptides from cytosol into the ER for class II loading
C. It cleaves the invariant chain into CLIP within the proteasome
D. It catalyzes exchange of CLIP for higher-affinity antigenic peptides in the endosome

54 A TCR recognizes a peptide-MHC complex, but signal transduction fails despite normal TCR expression. A defect in which associated structure is the most likely cause?

T-cell receptors Hard
A. The variable domain junctional region of the chain
B. The -microglobulin subunit of the presenting MHC
C. The peptide anchor residues binding the MHC groove
D. The CD3 complex ( chains) carrying ITAMs for signaling

55 Which statement correctly contrasts the constitutive tissue distribution of MHC class I and class II molecules?

cellular distribution of MHC molecules Hard
A. Both are absent from mature erythrocytes but present on all other cells including neurons at high levels
B. Both are expressed constitutively only on professional APCs
C. Class I is on virtually all nucleated cells; class II is restricted to professional APCs and thymic epithelium
D. Class II is on all nucleated cells; class I is restricted to lymphocytes

56 How is CD4 versus CD8 lineage commitment determined during positive selection of double-positive thymocytes?

T-cell maturation Hard
A. Random silencing of one coreceptor independent of MHC specificity
B. TCR engagement with MHC II favors CD4; engagement with MHC I favors CD8 (kinetic signaling/coreceptor matching)
C. CD8 commitment requires stronger overall TCR signal than CD4 in all cases
D. Notch signaling alone dictates lineage regardless of MHC class

57 As a developing B cell progresses from pro-B to pre-B stage, which molecular event marks the pre-B checkpoint?

B-cell maturation Hard
A. Class switch recombination to IgG
B. Expression of the pre-BCR ( heavy chain + surrogate light chain) signaling productive rearrangement
C. Successful light-chain rearrangement and surface IgM expression
D. Somatic hypermutation of the heavy-chain variable region

58 MHC class III genes are located within the MHC locus but differ functionally from class I and II. Which products are encoded by class III genes?

types of MHC Hard
A. Peptide-binding molecules presenting to T cells
B. Complement components (C4, C2, factor B) and cytokines like TNF, not peptide-presenting molecules
C. Invariant chain and tapasin for antigen loading
D. Surrogate light chains used during B-cell development

59 MHC alleles are expressed codominantly. For a heterozygous individual at the three classical class I loci (HLA-A, -B, -C), how many distinct classical class I molecules can potentially be expressed?

introduction of MHC Hard
A. Six, because each of the three loci contributes two allelic products
B. Three, one from each locus with allelic exclusion
C. Twelve, doubling for both class I and class II combined
D. Two, one maternal and one paternal haplotype product

60 Estimates suggest the vast majority of developing thymocytes die during selection. Which combination best explains this high attrition?

thymic selection of T-cells Hard
A. Massive clonal deletion of all MHC-binding cells regardless of affinity
B. Failure of -selection in nearly all DN cells
C. Death by neglect (no positive selection) plus deletion of strongly self-reactive clones
D. Apoptosis triggered solely by lack of cytokine support in the medulla