Publications by authors named "Soo-Jeet Teh"

TNF receptor-2 (TNFR2) plays a critical role in promoting the activation and survival of naive T cells during the primary response. Interestingly, anti-CD3 plus IL-2 activated TNFR2(-/-) CD8 T cells are highly resistant to activation-induced cell death (AICD), which correlates with high expression levels of prosurvival molecules such as Bcl-2, survivin, and CD127 (IL-7Ralpha). We determined whether the resistance of activated TNFR2(-/-) CD8 T cells to AICD contributes to more effective protection against tumor cell growth.

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Naive T cells require costimulation for robust Ag-driven differentiation and survival. Members of the TNFR family have been shown to provide costimulatory signals conferring survival at distinct phases of the T cell response. In this study, we show that CD4 and CD8 T cells depend on TNFR type 2 (p75) for survival during clonal expansion, allowing larger accumulation of effector cells and conferring protection from apoptosis for a robust memory pool in vivo.

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Article Synopsis
  • Research shows that IL-2-activated CD8(+)CD44(hi) cells from normal mice can kill tumor cells, especially those with NKG2D ligands, due to their expression of both adaptive and innate immune receptors.
  • CD8+ T cells from H-Y TCR transgenic mice display traits of both T cells and natural killer (NK) cells, require self-antigen for optimal expansion, and can be activated by cytokines alone.
  • These transgenic T cells express the NKG2D receptor and the DAP12 adaptor protein, allowing them to engage in enhanced targeting of cells while showing similar properties to the CD8(+)CD44(hi) cells in normal mice.
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Two important Ras-guanyl nucleotide exchange factors, Sos and RasGRP1, control Ras activation in thymocytes. However, the relative contribution of these two exchange factors to Ras/ERK activation and their resulting impact on positive and negative selection is unclear. We have produced two lines of RasGRP1(-/-) TCR transgenic mice to determine the effect of RasGRP1 in T cell development under conditions of defined TCR signaling.

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