Lesson 6.4.1
6.4.1 Antigens, antibodies and immune cells Quiz: Pearson Edexcel Biology A (Salters-Nuffield), Unit 6
20 questions
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Lesson 6.4.1, Antigens, antibodies and immune cells: 20 multiple choice questions for the Pearson Edexcel Biology A (Salters-Nuffield) (9BI0), Unit 6: Immunity, Infection and Forensics, written with Revision Ninja.
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The 20 questions
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An antigen is best defined as:
- A type of white blood cell that engulfs pathogens and digests them within lysosomes
- A molecule, usually a protein or glycoprotein
- A protein produced by B cells that circulates in the blood and destroys every pathogen it touches
- A chemical released by mast cells that dilates blood vessels during an inflammatory response
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Antibodies are produced by:
- Neutrophils, which are short-lived phagocytes that move quickly to the site of infection
- Plasma cells, which are differentiated B cells that secrete large quantities of antibody
- Red blood cells, which carry antibodies around the body bound to their membrane proteins
- Macrophages, which engulf pathogens and digest them with enzymes in their lysosomes
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The structure of an antibody molecule typically consists of:
- A single chain of protein folded into a spherical capsid that encloses nucleic acid
- Two lipid layers forming an envelope around a central core of nucleic acid and proteins
- Four identical chains of peptidoglycan joined by glycosidic bonds to form a rigid wall
- Two heavy chains and two light chains joined by disulfide bonds
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The variable region of an antibody is important because it:
- Attaches the antibody to the surface of macrophages, which then digest the antibody
- Activates the complement cascade directly, without binding to any antigen first
- Forms the antigen-binding site, which has a shape complementary to a specific antigen
- Carries the genetic code for the constant region of the antibody and so controls its class
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Macrophages and antigen-presenting cells contribute to the immune response by:
- Engulfing pathogens and displaying fragments of their antigens on the cell surface to activate helper T cells
- Releasing histamine that causes blood vessels to dilate and allow lymphocytes into the tissue
- Binding directly to pathogens and killing them by releasing perforin into the infected cell
- Producing large quantities of antibodies that are secreted into the blood to neutralise pathogens
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Which function of antibodies involves clumping pathogens together so they are easier to phagocytose?
- Opsonisation of the lysosomes, in which antibodies activate the digestive enzymes inside them
- Lysis, in which antibodies bind to the phospholipid membrane of the host cell and break it
- Neutralisation, in which antibodies bind to the active site of an enzyme and inhibit its action
- Agglutination, in which antibodies bind several pathogens and form clumps that are easier to engulf
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Which term describes the binding of antibodies to toxins so that the toxin cannot bind to host cells?
- Lysis, in which the antibody breaks the toxin into small pieces that can be excreted
- Neutralisation, in which the antibody blocks the site that the toxin needs to attach to cells
- Agglutination, in which the antibody clumps toxins together into large inert aggregates
- Opsonisation, in which the antibody coats the toxin so that phagocytes can engulf it
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Antigen-presenting cells display antigen fragments on which molecules?
- MHC class II molecules, which are recognised by helper T cells
- Peptidoglycan chains, which are recognised by memory B cells in the lymph nodes
- Surfactant proteins, which are recognised by B cells in the alveolar walls of the lung
- Haemoglobin molecules, which are recognised by killer T cells in the blood
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A patient produces antibodies that bind to a virus. Which property of the antibody makes this binding specific?
- The shape of the variable region is complementary to a particular epitope on the viral antigen
- The constant region is identical to the viral capsid, so it binds to any viral particle
- The antibody is produced by every B cell in the body, so it binds to any antigen equally well
- The antibody contains peptidoglycan, which binds only to viral envelope glycoproteins
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An epitope is best described as:
- The entire protein molecule that is produced by a plasma cell in response to infection
- The molecule that carries oxygen to the tissues and is released by damaged red blood cells
- The part of an antigen that is recognised by and binds to a particular antibody or receptor
- The region of the cell membrane that controls the entry of antibodies into the cell
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Which cell is responsible for presenting antigen to helper T cells as part of the adaptive response?
- Erythrocytes, which carry the antigens to the lymph nodes on their membrane surface
- Mast cells, which release histamine but do not process antigen for presentation
- Macrophages and dendritic cells, which act as antigen-presenting cells
- Neutrophils, which release digestive enzymes that destroy pathogens in the blood
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Which feature distinguishes antibodies from antigens?
- Antibodies are made only in bacteria, whereas antigens are made only by human cells
- Antibodies are proteins made by the immune system to bind antigens, whereas antigens are molecules that trigger the response
- Antibodies are foreign molecules that trigger the response, whereas antigens are made by the host
- Antibodies are carbohydrates with no protein content, whereas antigens are always lipids
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Why does a single antigen often elicit antibodies against several different epitopes?
- Because each antigen is made of a single identical epitope repeated many times on the surface
- Because antibodies can change their shape after binding so that they recognise every part of the antigen
- Because a large antigen such as a protein has multiple distinct regions, each capable of being recognised by different B cells
- Because each epitope is made of nucleic acid, which can be recognised only by memory B cells
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Which statement about antibody classes is correct?
- Antibodies differ in their variable regions only, and their constant regions are always identical
- Antibodies differ only in their colour, which indicates whether they are produced in the blood
- Antibodies differ only in the number of light chains, which is always one for all classes
- Antibodies differ in their constant regions
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Opsonisation is best described as:
- Coating of a pathogen by antibodies so that phagocytes bind to and engulf it more easily
- Coating of a virus by lysozyme so that its capsid is broken down before it can enter cells
- Coating of a red blood cell by antibodies so that it becomes unable to carry oxygen
- Coating of a phagocyte by antigens so that it can present them to helper T cells
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A researcher finds that a serum sample neutralises a toxin in vitro. Which best explains this result?
- Red blood cells in the serum engulfed the toxin, which was then digested in their lysosomes
- Histamine in the serum dissolved the toxin into harmless fragments that could be excreted
- Lysozyme in the serum broke down the toxin's peptidoglycan wall, destroying its structure
- Antibodies in the serum bound the toxin's active sites, preventing it from attaching to target cells
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Which statement evaluates the claim that antibodies destroy pathogens directly?
- The claim is accurate, since antibodies kill pathogens by releasing perforin into their membranes
- The claim is inaccurate, since antibodies have no role in the immune response at any stage
- The claim is accurate, since every antibody contains enzymes that digest pathogens on contact
- The claim is partly inaccurate, since antibodies mainly tag, neutralise or clump pathogens for destruction by other immune cells
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A pathogen expresses a new antigen that the immune system has not previously encountered. Which best describes the initial response?
- Slow, because only a few B cells with matching receptors are present and must be clonally selected and expanded
- Immediate and large, because all B cells already produce antibodies against every possible antigen
- Immediate and large, because the constant region of antibodies recognises all new antigens
- Absent, because antibodies cannot be made against antigens that have not previously been seen
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Which statement describes the role of helper T cells in relation to antibody production?
- They inhibit the division of B cells, which prevents antibody production from becoming excessive
- They engulf antigens and digest them in their lysosomes before any B cell can be activated
- They are activated by antigen presented on MHC class II
- They produce antibodies directly and secrete them into the blood as soon as they are activated
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Which of the following is an example of an antigen found on the surface of a pathogen rather than a human cell?
- The peptidoglycan layer that is found in the cell walls of all human cells and tissues
- A glycoprotein spike on the envelope of an enveloped virus
- The haemoglobin molecule that is found on the membrane of every mature red blood cell
- The MHC class I molecule that is found on the surface of every nucleated human cell
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