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El-Rifai, W.

Publications and source records attributed to El-Rifai, W..

3 recordsLinked to original sources

A critical role of epithelial MHCII in initiation of autoimmune tumorigenesis and sustaining premalignancy growth in the stomach

Autoimmunity is emerging as a new etiology for early-onset gastric cancer (GC). However, it remains unclear what molecular pathways drive the initiation and progression of autoimmune tumorigenesis. Given that Major Histocompatibility Complex Class II (MHCII) is the strongest genetic risk factor for many autoimmune diseases, we hypothesized that MHCII-mediated autoantigen presentation drives tumorigenic differentiation of epithelial cells. Here we show that epithelial MHCII, rather than MHCII from immune cells, plays an essential role in the initiation of autoimmunity-driven tumorigenic differentiation of gastric epithelial cells, which was characterized by increased expression of cancer-associated markers with immune-evasive and stem-like features that potentiate premalignant progression. In addition, we show that early gastric premalignancy is reversible upon the removal of epithelial MHCII. This study reveals that epithelial MHCII antigen presentation is essential in the early stages of autoimmune-driven gastric tumorigenesis and highlight epithelial MHCII as a potential biomarker or therapeutic target in early interventions of autoimmunity-driven cancer development.

immunology↗

Autoimmunity and H. pylori infection cooperatively promote epithelial tumorigenic differentiation and systemic immune modulation

Background and AimsGastric cancer (GC) demographics have shifted, with a growing impact on younger populations, particularly women. Chronic Helicobacter pylori (HP) infection is the leading risk factor for GC; however, decreasing HP prevalence means it is unlikely the cause of rising incidence of early-onset GC. Autoimmunity, which is more prevalent in women, has been proposed as a contributing factor. As autoimmunity prevalence increases, HP and gastric autoimmunity are likely to converge within one individual. This study aimed to examine how combinatorial HP infection and autoimmunity affect tumorigenesis and the immune landscape. MethodsA mouse model mimicking human CTLA4 insufficiency and its risk of autoimmunity-driven GC development, CTLA4KD, was infected with HP strain PMSS1 by oral gavage. Tumorigenesis was histologically assed. Hematopoietic and non-hematopoietic cells were analyzed using 40-color spectral flow cytometry. Human PBMCs were co-cultured with HP, followed by flow cytometry and qRT-PCR for gene expression of sorted PBMC subsets. ResultsHP infection in CTLA4KD mice advanced dysplasia and increased tertiary lymphoid structures within the gastric mucosa. Loss of E-Cadherin and DMBT1 was exacerbated in the combinatorial setting of autoimmunity and HP infection. In the innate immune system HP and autoimmunity showed an additive effect in systemic NK cell decreases. In the adaptive immune system, HP and autoimmunity cooperatively elevated the proportion of CD4+Foxp3- cells expressing the transcription factor Helios, persisting 6-8 months post infection. The Helios-expressing CD4 cells co-expressed inhibitory markers PD-1, CD200 and CD39. ConclusionAutoimmunity and HP infection cooperatively elicit long-lasting suppression of innate and adaptive immunity while promoting epithelial tumorigenic differentiation in the stomach. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=77 SRC="FIGDIR/small/690054v1_ufig1.gif" ALT="Figure 1"> View larger version (17K): org.highwire.dtl.DTLVardef@1096623org.highwire.dtl.DTLVardef@1099e7org.highwire.dtl.DTLVardef@1e8493forg.highwire.dtl.DTLVardef@120e5d3_HPS_FORMAT_FIGEXP M_FIG C_FIG Background and contextAutoimmunity is emerging as a contributing factor for early-onset gastric cancer especially in young women, but it is unknown how it interacts with the most prevalent etiology factor, Helicobacter pylori. New findingsThis study provides the initial evidence that Helicobacter pylori and autoimmunity cooperatively cause long-lasting suppression of innate and adaptive immunity while promoting epithelial tumorigenic differentiation in the stomach. LimitationsEven with the murine-adapted Helicobacter pylori strain PMSS1, a human pathogen, the mouse modeling remains technically and conceptually challenging and can only capture some aspects of human Helicobacter pylori infection. Clinical research relevanceThis study showcases how autoimmunity predisposed by host genetics may cooperate with a prevalent environment factor, Helicobacter pylori, to promote gastric cancer development, with cellular and histopathological changes in the stomach, as well as local and systemic alteration of immune profiles. The lasting effects long after the elimination of Helicobacter pylori suggest the necessity of remedies besides Helicobacter pylori eradication. Basic research relevanceThis study provides molecular and cellular clues for how a convergence of autoimmunity and Helicobacter pylori cooperatively downregulates tumor suppressors in gastric epithelial cells while causing long-lasting suppression of innate and adaptive immunity. More studies are needed for better understanding of the interaction between Helicobacter pylori and autoimmunity, to help develop interventions against the alarming trend of early-onset gastric cancer. Lay summaryThis study provides initial insight into how autoimmunity and Helicobacter pylori in combination may impinge on multi-pronged effect on the stomach and the immune system to accelerate gastric cancer development.

cancer biology↗

Epigenetic regulation of p63 blocks squamous-to-neuroendocrine transdifferentiation in esophageal development and malignancy

While cell fate determination and maintenance are important in establishing and preserving tissue identity and function during development, aberrant cell fate transition leads to cancer cell heterogeneity and resistance to treatment. Here, we report an unexpected role for the transcription factor p63 (Trp63/TP63) in the fate choice of squamous versus neuroendocrine lineage in esophageal development and malignancy. Deletion of p63 results in extensive neuroendocrine differentiation in the developing mouse esophagus and esophageal progenitors derived from human embryonic stem cells. In human esophageal neuroendocrine carcinoma (eNEC) cells, p63 is transcriptionally silenced by EZH2-mediated H3K27 trimethylation (H3K27me3). Upregulation of the major p63 isoform {Delta}Np63, through either ectopic expression or EZH2 inhibition, promotes squamous transdifferentiation of eNEC cells. Together these findings uncover p63 as a rheostat in coordinating the transition between squamous and neuroendocrine cell fates during esophageal development and tumor progression.

cell biology↗