Lesson 4 of 5 / Immune recognition and memory
IgG: bind specifically, recruit help
Why does an antibody need both variable and constant regions?
In this lesson: Relate IgG molecular structure to specificity and effector functions.
About 7 min
The key ideaVariable regions bind an antigenic feature; constant regions recruit other immune components, linking recognition to clearance.
From recognition to response
Which part binds, and which part recruits help?
Each binding site combines variable regions from one heavy and one light chain. The two sites in this typical IgG recognise the same epitope.
Teal = heavy chains; brown = light chains; purple highlights variable regions when selected. Small gold bridges = disulfide bonds. The two matching antigenic features above the arms are simplified shapes, not a literal atomic model.
Explanation
An IgG molecule has two identical heavy chains and two identical light chains, held together by disulfide bonds and other interactions. Its folded structure forms a Y-like arrangement with two antigen-binding sites and a hinge that permits some flexibility.
Each binding site is formed by variable regions of a heavy and a light chain. Their three-dimensional shape and chemical properties determine affinity for an epitope, a particular antigenic feature. The two sites of one typical IgG molecule have the same specificity, allowing cross-linking of repeated targets.
Binding can neutralise a toxin or block a pathogen surface protein needed for attachment. Antibody coating can also promote phagocytosis when immune-cell receptors recognise the constant Fc region, a process called opsonisation. Certain antibody-bound targets can activate complement pathways.
The constant heavy-chain region helps determine antibody class and effector interactions. Specific binding and recruitment of clearance mechanisms are therefore distinct but connected functions. An antibody is not itself a phagocyte, and binding does not necessarily mean it directly lyses every target without other components.
Step by step
- 1
Locate the binding sites
Each uses heavy- and light-chain variable regions.
- 2
Identify structural support
Disulfide bonds and hinge organise the molecule.
- 3
Connect to clearance
Neutralisation differs from recruiting phagocytes or complement.
Worked example
Work through the evidence
An IgG fragment retains both binding sites but lacks the Fc region. Which function may remain and which may be impaired?
One way to explain it
Antigen binding and some neutralisation can remain, while Fc-dependent recruitment of phagocytes or complement can be impaired.
Why this answer works
- Binding specificity resides in variable regions.
- Effector recruitment depends on other structural regions.
Is this true? "Every antibody has one site for antigen A and a second unrelated site for antigen B."
A typical IgG has two equivalent sites with the same specificity.