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iPLA2β-null mice exposed to natural pathogens exhibit hepatocellular fibrotic injury with male-biased alteration of glycerolipid metabolism.

Created on 23 Jul 2026

Authors

Weihong Xu, Jiliang Wang, Gang Li, Gerhard Liebisch, Walee Chamulitrat

Published in

Frontiers in immunology. Volume 17. Pages 1839554. Epub Jul 08, 2026.

Abstract

Group VIA calcium-independent phospholipaseA2 (iPLA2β or PLA2G6) is a homeostatic enzyme involved in basal glycerophospholipid metabolism. The mutations in the PLA2G6 gene lead to heterogenous neurodegenerative disorders. Global PLA2G6 inactivation in iPLA2β-null mice exhibited liver fibrosis and intestinal atrophy when they reached an advanced age at 20-22 months old. Here, we analyzed the phenotypes of iPLA2β-null mice which happened to be exposed to natural pathogens in our animal facility. Compared with wild-type, male iPLA2β-null mice at 9-14 months of age exhibited reduced body, liver, and subcutaneous fat weights concomitant with decreased hepatic triacylglycerol and decreased expression of de novo lipogenesis genes. Hepatocytes from male mutants were sensitive to apoptosis induced by palmitic acid. Male but not female mutants displayed attenuation of hepatic lipid synthesis; however hepatic fibrosis was increased in mutants of both sexes. Hepatic apoptosis was also increased in mutants of both sexes, and they were susceptible to endotoxin-induced liver injury. Hence, global PLA2G6 inactivation combined with natural infection accelerates progression of chronic liver disease in both male and female mice with male-biased alteration of hepatocellular glycerolipid metabolism.

PMID:
42488636
Bibliographic data and abstract were imported from PubMed on 23 Jul 2026.

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