A necroptotic-to-apoptotic signaling axis underlies inflammatory bowel disease
Abstract
ABSTRACT Inflammatory bowel disease (IBD) is a chronic condition caused by altered cytokine signaling, maladaptive immunity, dysbiosis, and intestinal barrier dysfunction. Patients with IBD receive therapy to correct these imbalances and achieve remission. However, most patients relapse, suggesting that pathological mechanisms persist during remission. Here, we show that excess epithelial cell death is an underlying feature of IBD that arises in patients in remission and on advanced therapy. Mechanistically, nascent inflammation reprograms epithelial cells into a macrophage-like state that promotes RIPK1-independent necroptotic signaling, then triggers iNOS-mediated mitochondrial apoptosis of absorptive epithelial cells and PUMA-mediated intestinal stem cell death. These findings reveal aberrant epithelial cell death signaling as a hallmark of IBD that occurs early in mucosal lesion development and persists despite current therapeutic approaches. One-Sentence Summary Epithelial cell death is dysregulated in patients with inflammatory bowel disease.
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Authors: Jiyi Pang, Aysha Al‐Ani, Komal Patel, Yunzhuo Zhou, Samuel N. Young, Jinjin Chen, Isabella Kong, Marilou Barrios, James A. Rickard, Siqi Chen, Xiuquan Ma, Farzaneh‐Sadat Rezazadeh‐Shojaee, Seong-Beom Kim, Siavash Foroughi, Wayne Cawthorne, Annette V. Jacobsen, Asha Jois, Ashley Weir, Lachlan Whitehead, Pradeep Rajasekhar, Christopher R. Horne, Ruqian Lyu, Lucy J. Mather, Raymond K. H. Yip, Ellen Tsui, I. A. Azeez, Tao Tan, Weiwei Liang, Suresh Sivanesan, Andrew Metz, Ash Patwardhan, Natalie Shea, Guru Iyngkaran, Daniel Schneider, Alexander T. Elford, William Beattie, Finlay Macrae, Gianmaria Liccardi, Henning Walczak, Yuxia Zhang, Oliver M. Sieber, Tim Spelman, Lisa Giulino‐Roth, Michael Christie, Yunshun Chen, Kelly L. Rogers, Rory Bowden, Sandra E. Nicholson, Kate E. Lawlor, Edwin D. Hawkins, Britt Christensen, André L. Samson, James E. Vince, James M. Murphy
Institutions: The University of Melbourne, Cornell University, University of Cologne, Cologne Excellence Cluster on Cellular Stress Responses in Aging Associated Diseases, University College London, Monash University, Guangzhou Medical University, Zhengzhou University, Royal Children's Hospital, Nankai University, Guangzhou Women and Children Medical Center, The Royal Melbourne Hospital, Hudson Institute of Medical Research, Parks Victoria, Walter and Eliza Hall Institute of Medical Research, CSIRO Manufacturing, Ulsan National Institute of Science and Technology, Third Affiliated Hospital of Zhengzhou University, CRUK Lung Cancer Centre of Excellence