Smad4 signalling in T cells is required for suppression of gastrointestinal cancer
Byung-Gyu Kim1, Cuiling Li, Wenhui Qiao
1Laboratory of Cell Regulation and Carcinogenesis, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
Abstract:
SMAD4 (MAD homologue 4 (Drosophila)), also known as DPC4 (deleted in pancreatic cancer), is a tumour suppressor gene that encodes a central mediator of transforming growth factor-beta signalling. Germline mutations in SMAD4 are found in over 50% of patients with familial juvenile polyposis, an autosomal dominant disorder characterized by predisposition to hamartomatous polyps and gastrointestinal cancer. Dense inflammatory cell infiltrates underlay grossly normal appearing, non-polypoid colonic and gastric mucosa of patients with familial juvenile polyposis. This prominent stromal component suggests that loss of SMAD4-dependent signalling in cells within the epithelial microenvironment has an important role in the evolution of intestinal tumorigenesis in this syndrome. Here we show that selective loss of Smad4-dependent signalling in T cells leads to spontaneous epithelial cancers throughout the gastrointestinal tract in mice, whereas epithelial-specific deletion of the Smad4 gene does not. Tumours arising within the colon, rectum, duodenum, stomach and oral cavity are stroma-rich with dense plasma cell infiltrates. Smad4(-/-) T cells produce abundant T(H)2-type cytokines including interleukin (IL)-5, IL-6 and IL-13, known mediators of plasma cell and stromal expansion. The results support the concept that cancer, as an outcome, reflects the loss of the normal communication between the cellular constituents of a given organ, and indicate that Smad4-deficient T cells ultimately send the wrong message to their stromal and epithelial neighbours.
Insights
Loss of SMAD4 signaling in T cells, not epithelial cells, drives gastrointestinal cancer in mice. This highlights the crucial role of T cell communication in preventing tumor development.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- SMAD4 (MAD homologue 4), also known as DPC4, is a tumor suppressor gene critical for TGF-β signaling.
- Germline SMAD4 mutations cause familial juvenile polyposis, increasing gastrointestinal cancer risk.
- The stromal component in polyposis suggests microenvironment signaling is vital in tumorigenesis.
Purpose of the Study:
- To investigate the role of SMAD4-dependent signaling in T cells versus epithelial cells in gastrointestinal cancer development.
- To elucidate the mechanisms by which SMAD4 loss in specific cell types contributes to tumorigenesis.
Main Methods:
- Utilized genetically engineered mouse models with selective deletion of the Smad4 gene in T cells or epithelial cells.
- Analyzed tumor development, histology, and cytokine profiles in mice with Smad4 deficiency in different cell types.
Main Results:
- Selective loss of Smad4 in T cells led to spontaneous epithelial cancers throughout the gastrointestinal tract.
- Epithelial-specific Smad4 deletion did not induce tumors.
- Tumors were characterized by dense plasma cell infiltrates and stromal richness.
- Smad4-deficient T cells produced elevated levels of TH2 cytokines (IL-5, IL-6, IL-13).
Conclusions:
- Loss of SMAD4-dependent signaling specifically in T cells promotes intestinal tumorigenesis.
- Dysfunctional T cell signaling disrupts normal communication within the gastrointestinal microenvironment, leading to cancer.
- SMAD4-deficient T cells contribute to tumor development by promoting stromal and plasma cell expansion via cytokine production.
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