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CD44v7 interferes with activation-induced cell death by up-regulation of anti-apoptotic gene expression
Rachid Marhaba1, Mehdi Bourouba, Margot Zöller
1Department of Tumor Progression and Tumor Defense, German Cancer Research Center, Heidelberg, Germany.
Abstract:
Blockade of CD44v7 was described to cure trinitrobenzene sulfonic acid-induced colitis, a disease not developed by mice with targeted deletion of the CD44v7 exon. There was evidence for a reduction in activation-induced cell death on lamina propria lymphocytes of control as compared with CD44v7-deficient mice. To elucidate the mechanism underlying the relative apoptosis resistance of CD44v7-competent as compared with CD44v7-deficient lymphocytes, T cell activation and induction of apoptosis were analyzed on mesenteric lymph node cells and Peyer's patch lymphocytes of CD44v7-deficient and CD44v4-v7-transgenic mice, which overexpress rat CD44v4-v7 on T lymphocytes. CD44v7 deficiency was characterized by an increase in the percentage of apoptotic cells after stimulation, increased numbers of CD95L- and CD152-positive cells, low levels of the anti-apoptotic proteins Bcl-2 and Bcl-Xl, and decreased phosphorylation of the pro-apoptotic protein BAD. Also, lymphocytes from CD44v4-v7-transgenic mice displayed reduced levels of CD95L, low numbers of apoptotic cells, and constitutively elevated levels of Bcl-Xl. When stimulating lymphocytes by CD3 cross-linking, CD44v7 was not recruited toward the immunological synapse and preferentially associated with the cytoskeletal-linker protein ezrin. Thus, as opposed to the CD44 standard isoform, CD44v7 does not function as an accessory molecule; instead, it supports survival of activated T cells by interfering with activation-induced cell death.
Insights
The CD44v7 variant supports activated T cell survival by hindering activation-induced cell death. CD44v7 deficiency increases T cell apoptosis, while its overexpression promotes T cell survival, impacting immune responses.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- CD44v7 blockade cures trinitrobenzene sulfonic acid-induced colitis.
- CD44v7-deficient mice do not develop this colitis.
- Reduced activation-induced cell death observed in CD44v7-deficient lymphocytes.
Purpose of the Study:
- Elucidate the mechanism of apoptosis resistance in CD44v7-competent versus CD44v7-deficient lymphocytes.
- Analyze T cell activation and apoptosis induction in CD44v7-deficient and CD44v4-v7-transgenic mice.
Main Methods:
- Analysis of T cell activation and apoptosis in lymphocytes from CD44v7-deficient and CD44v4-v7-transgenic mice.
- Quantification of apoptotic cells, CD95L, CD152, Bcl-2, Bcl-Xl, and BAD phosphorylation.
- Investigation of CD44v7 recruitment to the immunological synapse and association with ezrin.
Main Results:
- CD44v7 deficiency increased T cell apoptosis, CD95L/CD152 expression, and decreased Bcl-2/Bcl-Xl levels.
- Lymphocytes from CD44v4-v7-transgenic mice showed reduced CD95L, low apoptosis, and elevated Bcl-Xl.
- CD44v7 did not recruit to the immunological synapse but associated with ezrin.
Conclusions:
- CD44v7 supports activated T cell survival by interfering with activation-induced cell death.
- Unlike the standard CD44 isoform, CD44v7 does not act as an accessory molecule.
- CD44v7 plays a crucial role in regulating T cell apoptosis and immune homeostasis.
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