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1.
Cell Death Dis ; 15(6): 403, 2024 Jun 10.
Article in English | MEDLINE | ID: mdl-38858387

ABSTRACT

Necroptosis is an inflammatory form of cell suicide that critically depends on the kinase activity of Receptor Interacting Protein Kinase 3 (RIPK3). Previous studies showed that immunization with necroptotic cells conferred protection against subsequent tumor challenge. Since RIPK3 can also promote apoptosis and NF-κB-dependent inflammation, it remains difficult to determine the contribution of necroptosis-associated release of damage-associated molecular patterns (DAMPs) in anti-tumor immunity. Here, we describe a system that allows us to selectively induce RIPK3-dependent necroptosis or apoptosis with minimal NF-κB-dependent inflammatory cytokine expression. In a syngeneic tumor challenge model, immunization with necroptotic cells conferred superior protection against subsequent tumor challenge. Surprisingly, this protective effect required CD4+ T cells rather than CD8+ T cells and is dependent on host type I interferon signaling. Our results provide evidence that death-dependent type I interferon production following necroptosis is sufficient to elicit protective anti-tumor immunity.


Subject(s)
Necroptosis , Receptor-Interacting Protein Serine-Threonine Kinases , Necroptosis/immunology , Animals , Receptor-Interacting Protein Serine-Threonine Kinases/metabolism , Mice , Mice, Inbred C57BL , Interferon Type I/metabolism , CD8-Positive T-Lymphocytes/immunology , Signal Transduction , CD4-Positive T-Lymphocytes/immunology , CD4-Positive T-Lymphocytes/metabolism , Neoplasms/immunology , Neoplasms/pathology , Humans , NF-kappa B/metabolism , Cell Line, Tumor , Apoptosis/drug effects
2.
Res Sq ; 2023 Dec 19.
Article in English | MEDLINE | ID: mdl-38196632

ABSTRACT

Necroptosis is an inflammatory form of cell suicide that critically depends on the kinase activity of Receptor Interacting Protein Kinase 3 (RIPK3). Previous studies showed that immunization with necroptotic cells conferred protection against subsequent tumor challenge. Since RIPK3 can also promote apoptosis and NF-κB-dependent inflammation, it remains difficult to determine the contribution of necroptosis-associated release of damage-associated molecular patterns (DAMPs) in anti-tumor immunity. Here, we describe a system that allows us to selectively induce RIPK3-dependent necroptosis or apoptosis with minimal NF-κB-dependent inflammatory cytokine expression. In a syngeneic tumor challenge model, immunization with necroptotic cells conferred superior protection against subsequent tumor challenge. Surprisingly, this protective effect required CD4+ T cells rather than CD8+ T cells and is dependent on host type I interferon signaling. Our results provide evidence that death-dependent type I interferon production following necroptosis is sufficient to elicit protective anti-tumor immunity.

3.
J Cell Sci ; 135(17)2022 09 01.
Article in English | MEDLINE | ID: mdl-36098620

ABSTRACT

Necroptosis, or programmed necrosis, is an inflammatory form of cell death with important functions in host defense against pathogens and tissue homeostasis. The four cytosolic receptor-interacting protein kinase homotypic interaction motif (RHIM)-containing adaptor proteins RIPK1, RIPK3, TRIF (also known as TICAM1) and ZBP1 mediate necroptosis induction in response to infection and cytokine or innate immune receptor activation. Activation of the RHIM adaptors leads to phosphorylation, oligomerization and membrane targeting of the necroptosis effector protein mixed lineage kinase domain-like (MLKL). Active MLKL induces lesions on the plasma membrane, leading to the release of pro-inflammatory damage-associated molecular patterns (DAMPs). Thus, activities of the RHIM adaptors and MLKL are tightly regulated by posttranslational modifications to prevent inadvertent release of immunogenic contents. In this Cell Science at a Glance article and the accompanying poster, we provide an overview of the regulatory mechanisms of necroptosis and its biological functions in tissue homeostasis, pathogen infection and other inflammatory diseases.


Subject(s)
Apoptosis , Necroptosis , Cell Death , Humans , Necroptosis/genetics , Necrosis , Phosphorylation
4.
Mucosal Immunol ; 15(1): 84-95, 2022 01.
Article in English | MEDLINE | ID: mdl-34462571

ABSTRACT

Receptor interacting protein kinase 1 (RIPK1) is a cytosolic multidomain protein that controls cell life and death. While RIPK1 promotes cell death through its kinase activity, it also functions as a scaffold protein to promote cell survival by inhibiting FADD-caspase 8-dependent apoptosis and RIPK3-MLKL-dependent necroptosis. This pro-survival function is highlighted by excess cell death and perinatal lethality in Ripk1-/- mice. Recently, loss of function mutation of RIPK1 was found in patients with immunodeficiency and inflammatory bowel diseases. Hematopoietic stem cell transplantation restored not only immunodeficiency but also intestinal inflammatory pathology, indicating that RIPK1 in hematopoietic cells is critical to maintain intestinal immune homeostasis. Here, we generated dendritic cell (DC)-specific Ripk1-/- mice in a genetic background with loss of RIPK1 kinase activity and found that the mice developed spontaneous colonic inflammation characterized by increased neutrophil and Ly6C+ monocytes. In addition, these mice were highly resistant to injury-induced colitis. The increased colonic inflammation and the resistance to colitis were restored by dual inactivation of RIPK3 and FADD, but not by inhibition of RIPK3, MLKL, or ZBP1 alone. Altogether, these results reveal a scaffold activity-dependent role of RIPK1 in DC-mediated maintenance of colonic immune homeostasis.


Subject(s)
Colitis/immunology , Dendritic Cells/physiology , Immunologic Deficiency Syndromes/immunology , Inflammatory Bowel Diseases/immunology , Monocytes/immunology , Neutrophils/immunology , Receptor-Interacting Protein Serine-Threonine Kinases/metabolism , Animals , Antigens, Ly/metabolism , Colitis/chemically induced , Dextran Sulfate , Disease Models, Animal , Fas-Associated Death Domain Protein/genetics , Humans , Mice , Mice, Knockout , Receptor-Interacting Protein Serine-Threonine Kinases/genetics , Tissue Scaffolds
5.
J Immunol ; 203(12): 3427-3435, 2019 12 15.
Article in English | MEDLINE | ID: mdl-31712385

ABSTRACT

Obesity impacts over 30% of the United States population, resulting in a wide array of complications. Included among these is the deterioration of the intestinal barrier, which has been implicated in type 2 diabetes and susceptibility to bacterial transepithelial migration. The intestinal epithelium is maintained by αß and γδ intraepithelial T lymphocytes, which migrate along the epithelia, support epithelial homeostasis, and protect from infection. In this study, we investigate how obesity impacts intraepithelial lymphocyte (IEL) persistence and function in intestinal homeostasis and repair. Mice were fed a high-fat diet to induce obesity and to study immunomodulation in the intestine. There is a striking reduction in αß and γδ IEL persistence as obesity progresses with a different mechanism in αß versus γδ IEL populations. CD4+ and CD4+CD8+ αß intraepithelial T lymphocytes exhibit reduced homeostatic proliferation in obesity, whereas both αß and γδ IELs downregulate CD103 and CCR9. The reduction in intraepithelial T lymphocytes occurs within 7 wk of high-fat diet administration and is not dependent on chronic inflammation via TNF-α. Young mice administered a high-fat diet upon weaning exhibit the most dramatic phenotype, showing that childhood obesity has consequences on intestinal IEL seeding. Together, this dysfunction in the intestinal epithelium renders obese mice more susceptible to dextran sulfate sodium-induced colitis. Diet-induced weight loss restores IEL number and CD103/CCR9 expression and improves outcome in colitis. Together, these data confirm that obesity has immunomodulatory consequences in intestinal tissues that can be improved with weight loss.


Subject(s)
Colitis/etiology , Colitis/metabolism , Immunomodulation , Intraepithelial Lymphocytes/immunology , Intraepithelial Lymphocytes/metabolism , Obesity/immunology , Obesity/metabolism , Age Factors , Animals , Antigens, CD/genetics , Antigens, CD/metabolism , Biomarkers , Colitis/pathology , Dextran Sulfate/adverse effects , Diet, High-Fat , Disease Models, Animal , Fluorescent Antibody Technique , Gene Expression Regulation , Immunohistochemistry , Integrin alpha Chains/genetics , Integrin alpha Chains/metabolism , Male , Mice , Obesity/complications , Receptors, CCR/genetics , Receptors, CCR/metabolism , Receptors, Tumor Necrosis Factor/metabolism , Severity of Illness Index , Signal Transduction , Spleen/immunology , Spleen/metabolism , Thymus Gland/immunology , Thymus Gland/metabolism
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