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Immune cells in the tumor microenvironment. Mechanisms responsible for functional and signaling defects
1Department of Pathology, University of Pittsburgh School of Medicine, Pennsylvania 15213, USA. whitesidetl@msx.upmc.edu
Abstract:
Lymphocytes recovered from human tumors or the peripheral blood of patients with advanced malignancies are functionally compromised. Abnormalities in signaling via the T cell receptor (TcR) in T cells and Fc gamma RIII in NK cells obtained from cancer patients include significantly decreased expression of the receptor-associated zeta chains, decreased Ca++ flux as well as impaired kinase activity following triggering with anti-CD3 or anti-CD16 antibodies, respectively, and altered expression of downstream protein tyrosine kinase p56lck. Some of these defects were demonstrable in situ, in T cells infiltrating tumor tissues. Post-translational modifications of the zeta protein were responsible for its low levels, since near normal levels of mRNA were present in situ in the patients' T cells. LNL in tumor-involved LN or mononuclear cells in solid tumors were shown to contain numerous apoptotic (TUNEL+) CD3+ lymphocytes. Co-incubation of normal activated T cells or Jurkat cells with tumor targets (either freshly isolated or tumor cell lines) induced degradation of the zeta chain as well as apoptosis in a proportion of lymphocytes. Both fresh and cultured human tumors were shown to express FasL, and T cells in tumors were found to be Fas+. Therefore, the Fas-FasL pathway is, at least in part, responsible for signaling defects and apoptosis induced by the tumor in lymphocytes found in its milieu. Preliminary data indicate that immunotherapy with cytokines might normalize zeta expression in T cells and partly restore their antitumor functions.
Insights
Cancer impairs immune cells like lymphocytes, reducing their signaling and causing cell death. The Fas-FasL pathway is a key culprit, but cytokine immunotherapy may offer a solution.
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Lymphocytes in cancer patients exhibit functional deficits.
- These defects include compromised T cell receptor (TcR) and Fc gamma RIII signaling.
- Abnormalities involve decreased zeta chain expression, calcium flux, and kinase activity.
Purpose of the Study:
- To investigate the mechanisms behind lymphocyte dysfunction in cancer.
- To identify the role of specific signaling pathways in immune suppression.
- To explore potential therapeutic strategies for restoring anti-tumor immunity.
Main Methods:
- Analysis of T cells and NK cells from cancer patients.
- Assessment of receptor-associated zeta chains, Ca++ flux, and p56lck expression.
- In situ studies of tumor-infiltrating lymphocytes and co-incubation assays with tumor targets.
- Detection of Fas ligand (FasL) expression on tumors and Fas on T cells.
Main Results:
- Decreased zeta chain expression and impaired signaling were observed in lymphocytes from cancer patients.
- T cells infiltrating tumors showed signs of apoptosis (TUNEL+).
- Co-incubation with tumor cells induced zeta chain degradation and lymphocyte apoptosis.
- The Fas-FasL pathway was identified as a significant contributor to these defects.
Conclusions:
- Tumor-induced lymphocyte dysfunction is mediated, in part, by the Fas-FasL pathway.
- Post-translational modifications, not mRNA levels, underlie reduced zeta protein in T cells.
- Cytokine immunotherapy shows potential for normalizing T cell function and enhancing anti-tumor responses.