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. 2023 Jul 11;56(7):1578-1595.e8.
doi: 10.1016/j.immuni.2023.05.017. Epub 2023 Jun 16.

Sublethal necroptosis signaling promotes inflammation and liver cancer

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Free article

Sublethal necroptosis signaling promotes inflammation and liver cancer

Mihael Vucur et al. Immunity. .
Free article

Abstract

It is currently not well known how necroptosis and necroptosis responses manifest in vivo. Here, we uncovered a molecular switch facilitating reprogramming between two alternative modes of necroptosis signaling in hepatocytes, fundamentally affecting immune responses and hepatocarcinogenesis. Concomitant necrosome and NF-κB activation in hepatocytes, which physiologically express low concentrations of receptor-interacting kinase 3 (RIPK3), did not lead to immediate cell death but forced them into a prolonged "sublethal" state with leaky membranes, functioning as secretory cells that released specific chemokines including CCL20 and MCP-1. This triggered hepatic cell proliferation as well as activation of procarcinogenic monocyte-derived macrophage cell clusters, contributing to hepatocarcinogenesis. In contrast, necrosome activation in hepatocytes with inactive NF-κB-signaling caused an accelerated execution of necroptosis, limiting alarmin release, and thereby preventing inflammation and hepatocarcinogenesis. Consistently, intratumoral NF-κB-necroptosis signatures were associated with poor prognosis in human hepatocarcinogenesis. Therefore, pharmacological reprogramming between these distinct forms of necroptosis may represent a promising strategy against hepatocellular carcinoma.

Keywords: HCC; MLKL; NF-κB; RIP1; RIP3; RIPK1; RIPK3; TRAF2; intravital imaging; undead cells.

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Conflict of interest statement

Declaration of interests A.L.S. and J.M.M. contribute to a project developing necroptosis inhibitors in collaboration with Anaxis Pharma.

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