Hepatic stellate cells activate and avoid death under necroptosis stimuli: Hepatic fibrosis during necroptosis

Author:

Oh Ju Hee1ORCID,Saeed Waqar Khalid2ORCID,Kim Hye Young3ORCID,Lee Seung Min3ORCID,Lee A Hyeon3ORCID,Park Gye Ryeol3ORCID,Yoon Eileen L.4ORCID,Jun Dae Won3ORCID

Affiliation:

1. Department of Obstetrics and Gynecology, Institute of Women's Medical Life Science Yonsei Cancer Center, Severance Hospital, Yonsei University College of Medicine Seoul South Korea

2. Department of Biomedical Sciences Pak‐Austria Fachhochschule: Institute of Applied Sciences and Technology Haripur Pakistan

3. Department of Translational Medicine, Graduate School of Biomedical Science and Engineering Hanyang University Seoul South Korea

4. Department of Internal Medicine, College of Medicine Hanyang University Seoul South Korea

Abstract

AbstractBackground and AimNecroptosis is an emerging cell death pathway that allows cells to undergo “cellular suicide” in a caspase‐independent manner. We investigated the fate of hepatic stellate cells (HSCs) under necroptotic stimuli.Methods and ResultsThe RNA level of mixed lineage kinase domain‐like protein (MLKL) is higher in patients with non‐alcoholic fatty liver disease than in healthy controls. Hepatic fibrosis was significantly lower in MLKL‐KO bile duct ligation (KO‐BDL) mice than in wild‐type‐BDL mice. Necroptotic stimuli caused the death of HT‐29 and U937 cells. However, necroptotic stimuli activate HSCs instead of inducing cell death. MLKL inhibitors attenuated fibrogenic changes in HSCs during necroptosis. Unlike HT‐29 and U937 cells, MLKL phosphorylation and oligomerization were not observed during necroptosis in HSCs. RNA sequencing showed that NF‐κB signaling‐related genes were upregulated in HSCs following necroptotic stimulation. Necroptotic stimuli in HSCs increased the nuclear expression of NF‐κB, which decreased after MLKL inhibitor treatment. Induction of necroptosis in HSCs led to autophagosome activation and formation, which were attenuated by MLKL inhibitor treatment.ConclusionHSCs avoid necroptosis due to the absence of MLKL phosphorylation and oligomerization and are activated through autophagosome and NF‐κB pathways.

Publisher

Wiley

Subject

Gastroenterology,Hepatology

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