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Examination of Thymic Positive and Negative Selection by Flow Cytometry
Published on: October 8, 2012
Direct visualization of thymocyte apoptosis in neglect, acute and steady-state negative selection
A Wack1, H M Ladyman, O Williams
1Division of Molecular Immunology, National Institute for Medical Research, London, UK.
Abstract:
During thymocyte differentiation, the majority of the developing cells die in situ by apoptosis and are subsequently removed by macrophages. DNA fragmentation is one of the hallmarks of apoptosis and can be detected in situ by TdT-mediated dUTP-biotin nick end labeling (TUNEL). We used TUNEL combined with immunohistology to determine the sites of thymocyte apoptosis in mice transgenic for a TCR (F5) which recognizes a peptide (NP68) of the influenza virus nucleoprotein (NP) presented on the MHC class I H-2Db molecule. Apoptosis due to neglect was studied in F5 mice expressing a neutral MHC haplotype (F5/H-2q) and in beta 2-microglobulin-deficient F5 mice (F5/ beta 2m+). In both cases, the frequency of apoptotic cells was similar to that seen in F5/H-2b mice and non-transgenic C57BI/10 mice. Antigen-induced apoptosis was studied in F5 mice after i.p. Injection of the cognate NP68 peptide and in F5/NP double-transgenic mice. Three hours after peptide injection, apoptosis was high throughout the thymus cortex and clusters of apoptotic cells formed due to tissue macrophage uptake, whereas the thymic medulla remained unaffected. Massive recruitment of inflammatory cells into the thymus was seen as early as 1 h after peptide injection. Nine hours after peptide injection changes were apparent in the cortical epithelium and, by 4 days, the cortical network had collapsed to give scattered, compacted epithelial cells. In contrast, in F5/NP double-transgenic mice, thymocyte apoptosis induced by cognate self-peptide was localized at the cortico-medullary junction with little change seen in the epithelium of the cortex.
Insights
Thymocyte apoptosis occurs during differentiation and can be induced by antigen exposure. Antigen-induced thymocyte apoptosis rapidly affects the thymus cortex, leading to epithelial cell changes and inflammation.
Area of Science:
- Immunology
- Developmental Biology
- Cell Biology
Background:
- Thymocyte differentiation involves extensive apoptosis, with developing cells removed by macrophages.
- DNA fragmentation, a hallmark of apoptosis, is detectable via TdT-mediated dUTP-biotin nick end labeling (TUNEL).
Purpose of the Study:
- To investigate the spatial and temporal patterns of thymocyte apoptosis in transgenic mice.
- To differentiate between neglect-induced and antigen-induced apoptosis in the thymus.
Main Methods:
- Utilized TUNEL assay combined with immunohistology in F5 TCR transgenic mice.
- Studied apoptosis in mice with neutral MHC haplotype, beta 2-microglobulin deficiency, and after peptide injection or in double transgenic models.
Main Results:
- Neglect-induced apoptosis rates were similar across different MHC haplotypes and beta 2-microglobulin deficient mice.
- Antigen-induced apoptosis rapidly increased in the thymus cortex post-peptide injection, with inflammation and epithelial changes observed.
- Apoptosis in F5/NP double transgenic mice was localized to the cortico-medullary junction.
Conclusions:
- Antigen recognition triggers rapid, localized thymocyte apoptosis in the thymus cortex.
- The thymus exhibits distinct responses to neglect-induced versus antigen-induced apoptosis, impacting thymic architecture.
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