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Biology subjects

Weiss, S. A.

Publications and source records attributed to Weiss, S. A..

2 recordsLinked to original sources

Farnesoid X Receptor suppresses lipid peroxidation and ferroptosis

ObjectiveFerroptosis is a regulated cell death modality that occurs upon iron-dependent lipid peroxidation. The recent decade of research has uncovered many regulators driving ferroptosis as well as cellular gatekeepers preventing ferroptosis. Yet, many processes and networks remain to be elucidated. Methods and resultsIn this study, we performed a chemical screen using small molecules with known mode of action and identified two agonists (Turofexorate and Fexaramine) of the nuclear receptor Farnesoid X Receptor (FXR), also known as NR1H4, to suppress ferroptosis, but not apoptosis or necroptosis. Further, we demonstrate that in liver cells with high FXR protein levels, inhibition of FXR sensitizes cells to undergo ferroptotic cell death, while activation of FXR inhibits ferroptosis. Importantly, FXR also inhibits ferroptosis in ex vivo primary mouse hepatocytes. Activation of FXR by Turofexorate and Fexaramine significantly reduces lipid peroxidation. Mechanistically, overexpression of FXR or activation of FXR by bile acids upregulates the ferroptosis-inhibitory regulators FSP1, PPAR, GPX4, SCD1, and ACSL3 to reduce peroxidized lipids and to counteract ferroptosis. ConclusionIn this study, we demonstrate that activation of FXR inhibits ferroptotic cell death via upregulation of a number of ferroptosis-inhibitory proteins (FSP1, PPAR, GPX4, SCD1, and ACSL3) to reduce lipid peroxidation. Hence, modulating FXR activity may be beneficial to overcome ferroptosis-mediated degenerative diseases.

cell biology↗

Tumor-secreted versican co-opts myeloid IKKβ during metastasis

The mechanisms tumor cells use to hijack the immune system are largely uncharted. Here we used bioluminescent nuclear factor (NF)-{kappa}B reporter mice and macrophages to discover that metastatic tumors trigger NF-{kappa}B activation in host macrophages, dependent on mutant KRAS signaling and delivered via secretory versican. Versican activates NF-{kappa}B in tumor-associated macrophages via inhibitor of NF-{kappa}B kinase (IKK) {beta}, resulting in release of interleukin (IL)-1{beta} into the tumor microenvironment. Versican silencing in cancer cells or conditional IKK{beta} deletion in macrophages prevents myeloid NF-{kappa}B activation and metastasis. Versican is overexpressed and/or mutated in human cancers and metastatic effusions with KRAS mutations, predicts poor survival, can aid in the development of diagnostic platforms for pleural metastasis, and is druggable via toll-like receptor (TLR) 1/2 inhibition. The data indicate a cardinal role for tumor-derived versican in establishing cross-talk with macrophage IKK{beta} during metastasis and may foster the development of new therapies and diagnostic tools.

cancer biology↗