| Literature DB >> 16186188 |
Jonathan S Maltzman1, Lisa Kovoor, James L Clements, Gary A Koretzky.
Abstract
The SH2 domain containing leukocyte phosphoprotein of 76 kD (SLP-76) is critical for pre-TCR-mediated maturation to the CD4+CD8+ double positive (DP) stage in the thymus. The absolute block in SLP-76null mice at the CD4-CD8-CD44-CD25+ (double-negative 3, DN3) stage has hindered our understanding of the role of this adaptor in alphabeta TCR-mediated signal transduction in primary thymocytes and peripheral T lymphocytes. To evaluate the requirements for SLP-76 in these events, we used a cre-loxP approach to generate mice that conditionally delete SLP-76 after the DN3 checkpoint. These mice develop DP thymocytes that express the alphabeta TCR on the surface, but lack SLP-76 at the genomic DNA and protein levels. The DP compartment has reduced cellularity in young mice and fails to undergo positive selection to CD4+ or CD8+ single positive (SP) cells in vivo or activation-induced cell death in vitro. A small number of CD4+SP thymocytes are generated, but these cells fail to flux calcium in response to an alphabeta TCR-generated signal. Peripheral T cells are reduced in number, lack SLP-76 protein, and have an abnormal surface phenotype. These studies show for the first time that SLP-76 is required for signal transduction through the mature alphabeta TCR in primary cells of the T lineage.Entities:
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Year: 2005 PMID: 16186188 PMCID: PMC2213170 DOI: 10.1084/jem.20051128
Source DB: PubMed Journal: J Exp Med ISSN: 0022-1007 Impact factor: 14.307
Figure 1.Conditional deletion of SLP-76 after DN3 results in the appearance of DP thymocytes. (A) Representative FACS analysis of thymocytes from adult SLP-76F/FCD4cre mice and littermate controls. Similar analysis of a conventional SLP-76null thymus is shown for comparison. (B) Representative FACS analysis of CD8SP gated adult thymocytes for CD24 (HSA) and TCR-β levels. (C) Representative FACS analysis of thymocytes from 3-wk-old mice for γδ TCR population. Numbers represent the percentage of cells in the indicated regions. (D) PCR analysis of DN and DP thymocyte DNA. Bands representing the floxed and deleted alleles are indicated. DNA isolated from a littermate control, amplified in the same experiment and run on the same gel, is shown for comparison. (E) Western blot analysis for SLP-76 protein levels in DP cells from SLP-76F/FCD4cre and littermate control. β tubulin from the same blot is shown as a loading control. (F) Representative FACS analysis for SLP-76 levels of cells gated on DN and DP cells. The shaded line graph is a staining control using mature B220+ lymphocytes that are known to lack SLP-76 (1).
Thymocyte cellularity of SLP-76F/FCD4cre and littermate controlsm
|
| CD8SP |
| |||||
|---|---|---|---|---|---|---|---|
| Total cellularity | DN | DP | CD4SP | Mature | ISP | Total | |
| Adult, 13–17 wk old | |||||||
| WT ( | 86.9 ± 26.8 | 2.2 ± 0.7 | 63.9 ± 22.1 | 5.9 ± 2.0 | 1.17 ± 0.20 | 0.52 ± 0.32 | 2.46 ± 1.2 |
| SLP-76F/F CD4cre ( | 77.1 ± 41.5 | 3.2 ± 1.2 | 59.4 ± 35.4 | 0.63 ± 0.59 | 0.12 ± 0.20 | 0.40 ± 0.07 | 1.4 ± 1.3 |
| p-value | 0.56 | 0.05 | 0.76 | <0.001 | 0.02 | 0.67 | 0.1 |
| Young, 3–5 wk old | |||||||
| WT ( | 214 ± 33.4 | 3.9 ± 0.4 | 169.1 ± 26.4 | 17.1 ± 4.1 | 3.8 ± 1.0 | 0.41 ± 0..8 | 4.8 ± 0.7 |
| SLP-76F/F CD4cre ( | 108.3 ± 11.4 | 4.0 ± 0.1 | 92.3 ± 12.1 | 0.9 ± 0.1 | 0.3 ± 0.2 | 0.47 ± 0.04 | 1.3 ± 0.4 |
| p-value | <0.01 | 0.67 | 0.001 | <0.001 | <0.001 | 0.39 | <0.001 |
Thymocytes were stained with a cocktail of directly conjugated antibodies, including those specific for CD4 and CD8. In some experiments, antibodies specific for CD24 (HSA) and TCR β antibodies were included. Cell counts are divided by 106. Cells were subjected to FACS and gated on live cells based on FSC/ SSC profile. Total cellularity was determined by using a hemocytometer and trypan blue exclusion of dead cells. Absolute numbers of cells in each subset were determined by multiplying the total number of cells × % live gated × % subset. Numbers of thymi assessed are shown in the first column unless otherwise indicated. WT, littermate control.
For top three rows, to determine CD8SP subsets, CD4−CD8+ gated cells were assessed for expression of HSA and TCRβ as shown in Fig. 1 B. HSAloTCRβint-hi are defined as mature. HSAhiTCRβlo-int are defined as immature CD8SP cells.
For top three rows, mice were 15 wk of age (n = 2).
For bottom three rows,
ice were 5 wk of age (n = 2).
Statistical significance was assessed using a two-tailed Student's t test.
Figure 2.SLP-76-deficient DP thymocytes cannot transduce TCR-mediated signals. (A). TCR-induced calcium flux was measured in DP-gated thymocytes as described in Materials and methods. (B) Representative FACS of thymocytes from 11-wk-old mice stained with HSA and TCR β. Numbers represent the percentage of cells in the indicated regions. (C) Representative FACS of DP-gated thymocytes from SLP-76F/FCD4cre and control mice. (D) Thymocytes were left unstimulated or were stimulated with plate-bound anti-CD3, plate-bound CD3 plus CD28, or dexamethasone for 14 h. Acquired cells were gated on DP cells and assessed for exclusion of TOPRO-3. The percentage of TOPRO-3− DP cells relative to total DP cells is shown as percent viable. The reduction in viability of control cells stimulated with CD3 plus CD28 was statistically significant (*P < 0.05). (E) Thymocytes were left unstimulated or were stimulated for 2 h then stained for CD4, CD8, and nur77. Line graphs are gated on DP cells.
Figure 3.Post DP T cells have an altered CD4/CD8 ratio and cannot flux calcium in response to TCR cross-linking. Representative FACS analysis of (A) HSAlo-gated thymocytes, (B) live-gated lymph node cells, and (C) CD4-gated splenocytes. Relative percentages of cells within the gated regions are shown. (D) Intracellular staining for SLP-76 and TCR-β in CD4SP thymocytes. Staining controls are mature B220+ cells with SLP-76 antiserum and PE-labeled isotype control for TCR-β. (E) TCR-induced calcium flux from SLP-76F/FCD4cre mice and control animals was performed in CD4SP-gated cells as described in Materials and methods.