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Bio 328 Immunology Tcell activation and differentiation

Bio 328 Immunology Tcell activation and differentiation

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Page 1: Bio 328 Immunology Tcell activation and differentiation

Bio 328 Immunology

Tcell activation and differentiation

Page 2: Bio 328 Immunology Tcell activation and differentiation
Page 3: Bio 328 Immunology Tcell activation and differentiation
Page 4: Bio 328 Immunology Tcell activation and differentiation

DN1

DN2 DN3 DN4 DP

SP

SP

Trabecular bloodvessel

Medulla

Cortex

Subcapsular sinus Capsule

Maturation of T cells in the Thymus.

Proliferation chain

rearrangementLymphoid precursor

Pro-T

Pre-T Post pre-T(pre-TCR)

Proliferation

chainrearrangement

Positiveselection

NegativeSelection

DoublePositive

SinglePositive

Page 5: Bio 328 Immunology Tcell activation and differentiation
Page 6: Bio 328 Immunology Tcell activation and differentiation

Precursor Pro-T pre-TPostPre-T

DoublePositive

SinglePositive

DN1 DN2 DN3 DN4 DP SP

C-kit + + - - - -CD44 + + - - - -CD25 - + + - - -

Pre-T - - + + - -CD3 - - + + + +CD4 - - - - + +CD8 - - - - + +

chain - - - + + +chain - - - - - +

Page 7: Bio 328 Immunology Tcell activation and differentiation
Page 8: Bio 328 Immunology Tcell activation and differentiation
Page 9: Bio 328 Immunology Tcell activation and differentiation
Page 10: Bio 328 Immunology Tcell activation and differentiation
Page 11: Bio 328 Immunology Tcell activation and differentiation
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“Thus, the MHC haplotype of the thymus in which the thymocytes develop determines the MHC restriction of the

T cells.”Zinkernagel RM et al.

Page 15: Bio 328 Immunology Tcell activation and differentiation
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Evidence for Positive Selection:Ada Kruisbeek et al.

Page 18: Bio 328 Immunology Tcell activation and differentiation

Knock-out mice

Cell typeControl

miceMHC I

defMHC II

def

DN + + +

CD4+CD8+ + + +

CD4+ + + -

CD8+ + - +

Effect of class I or ll MHC deficiency on thymocyte populations.

Page 19: Bio 328 Immunology Tcell activation and differentiation

Transfection of re-arranged TCR and chain genes.

Page 20: Bio 328 Immunology Tcell activation and differentiation

Harald von Boehmer et al.

(1989)

Page 21: Bio 328 Immunology Tcell activation and differentiation
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Negative Selection

Page 23: Bio 328 Immunology Tcell activation and differentiation

Absence of Positive selection

Page 24: Bio 328 Immunology Tcell activation and differentiation
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Evidence for negative selection (Marrack & Kappler)

Page 26: Bio 328 Immunology Tcell activation and differentiation
Page 27: Bio 328 Immunology Tcell activation and differentiation

Evidence for negative selection:

Effect of Staphylococcys enterotoxin.

Page 28: Bio 328 Immunology Tcell activation and differentiation

Mls superantigens (mouse mammary tumor virus)

AKR mouse are Mls1-positive

Page 29: Bio 328 Immunology Tcell activation and differentiation

Evidence for negative selection:

(Minor-lymphocyte stimulating antigens)

Page 30: Bio 328 Immunology Tcell activation and differentiation

Central issues in thymic selection.

1. Positive and negative selectiona. Affinity hypothesisb. Altered peptide hypothesis

(Marrack and Kappler).

2. DP to SP CD4 or CD8 cellsa. Instructive modelb. Stochastic model

Page 31: Bio 328 Immunology Tcell activation and differentiation
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Affinity Model.

Page 33: Bio 328 Immunology Tcell activation and differentiation
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Altered Peptide Model(Philippa Marrack and John Kappler)

Page 35: Bio 328 Immunology Tcell activation and differentiation
Page 36: Bio 328 Immunology Tcell activation and differentiation

IPEX = Foxp3 deficiency = Immunodysregulation Poly-Endocrinopathy Enteropathy X-linked

Page 37: Bio 328 Immunology Tcell activation and differentiation
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Canale-Smith syndrome

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The End