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Chapter 8 Major Histocompatibility Complex Dr. Capers

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1 Chapter 8 Major Histocompatibility Complex Dr. Capers
immunology

2 Kindt • Goldsby • Osborne
Kuby IMMUNOLOGY Sixth Edition Chapter 8 The Major Histocompatibility Complex and Antigen Presentation Copyright © 2007 by W. H. Freeman and Company

3 Antibodies can recognize antigen alone
T-cell receptors can only recognize antigen that has been processed and presented by Major Histocompatibility Complex (MHC) Involves: Antigen processing Antigen presentation

4 Inheritance of MHC MHC coded by cluster of genes
Rejection of foreign tissue is due to immune response against cell surface molecules, histocompatibility antigens

5 Inheritance of MHC Collection of genes on chromosome 6 in humans (HLA complex) and chromosome 17 in mice (H-2 complex) Class I MHC genes Encode glycoproteins expressed on all nucleated cells Class II MHC genes Encode glycoproteins expressed on antigen-presenting cells (macrophages, B cells, dendritic cells) Class III MHC genes Encode various products involved in complement and inflammation

6 Inheritance of MHC

7 Inheritance of MHC Many different alleles exist at each locus among the population Each set of alleles is called a haplotype Genes of MHC lie close together so crossing over during meiosis occurs infrequently Individual inherits one haplotype from mom, one from dad Many in the population are heterozygous Alleles are codominant so expressed simultaneously

8 Inheritance of MHC Inbred strains will express identical haplotypes – homozygous Inbred mice are solid colors

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10 Inheritance of MHC

11 MHC molecules Both Class I and Class II are membrane-bound glycoproteins Antigen-presenting molecules

12 Class I MHC Alpha α chain Beta β2-microglobulin Transmembrane
Encoded by A, B, and C regions in human MHC complex Beta β2-microglobulin Encoded by highly conserved gene on different chromosome

13 Class II Molecule α1 and α2 chain β1 and β2 chain Transmembrane

14 Figure b shows top View of peptide cleft

15 Every individual expresses small number of different Class I and Class II
Limited number of MHC must be able to present enormous array of different antigens MHC does not display specificity of Antibodies MHC is “promiscuous” 

16 Peptide Interactions with MHC

17 In contrast, MHC molecules are fixed in the genes
Generation of B-cell receptors (antibodies) and T-cell receptors is dynamic, changing over-time Gene rearrangement In contrast, MHC molecules are fixed in the genes Differences in population due to large number of alleles In humans, ~370 A alleles, 660 B alleles, 190 C alleles

18 Location of genes Human Class I MHC are red Class II MHC are blue
Telomeric end of HLA complex Class II MHC are blue Centromeric end of HLA complex

19 Cellular Expression of MHC

20 MHC Diversity Diversity (polymorphism) helps to protect a species from wide range of infectious diseases Certain alleles make individuals more susceptible to diseases Example, polymorphism in cheetah is limited, due to bottleneck effect

21 MHC Restriction CD8+ Tc cells are MHC Class I restricted
Can only recognize antigen presented by MHC Class I molecules Therefore, cells with MHC Class I are called “taget cells”, killed by cytotoxic T cells CD4+ TH cells are MHC Class II restricted Cells with MHC Class II are called antigen-presenting cells (APCs)

22 MHC Restriction Mice immunized with lymphocytic choriomenigitis virus (LCM) Animal’s spleen cells were extracted (containing Tc cells)

23 Antigen Presenting Pathways
Cystolic Pathway Endogeneous antigens – produced in cell, in infected cell Antigens presented on MHC Class I to Tc cells Endocytic Pathway Exogeneous antigen – taken in by endocytosis by antigen-presenting cells and presented to TH cells by MHC Class II

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25 Cystolic Pathway Endogenous
Figure below: (a) shows degradation of misfolded proteing (b) shows intact proteins linked to ubiquitin to be degraded

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27 Endocytic Pathway Exogenous

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