Proteomics

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Quantitative proteomics analysis of liver from LONP1 Knockout mice


ABSTRACT: The mechanisms of hepatic stellate cell (HSC) activation and the development of liver fibrosis remains largely unknow. Here, we revealed a fibrosis related mechanism of hepatocytes-HSCs crosstalk regulated by hepatocyte LONP1. We demonstrate that hepatocyte LONP1 expression is decreased in HFD-fed mice and MASH patients. Liver-specific LONP1 deficiency increases orotic acid level and aggravates MASH-induced liver fibrosis in mice. We have identified DHODH as a substrate that is selectively degraded by LONP1 in an ATP-dependent manner. Moreover, activation of LONP1 reduces orotic acid levels and alleviates MASH-induced fibrosis in mice. Mechanistically, LONP1 mediates DHODH turnover, maintaining lower orotic acid levels to inhibit ATF3-mediated HSC proliferation and activation, thereby preventing liver fibrosis. Furthermore, plasma orotic acid levels are negatively correlated with liver LONP1 levels in humans. Therefore, targeting LONP1-mediated hepatocyte-HSC communication may represent a promising therapeutic strategy for MASH-induced liver fibrosis.

INSTRUMENT(S):

ORGANISM(S): Mus Musculus (mouse)

TISSUE(S): Liver

SUBMITTER: Dengqiu Xu  

LAB HEAD: Dengqiu Xu

PROVIDER: PXD055467 | Pride | 2025-09-23

REPOSITORIES: Pride

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Decreased LONP1 expression exacerbates MASH-induced liver fibrosis via elevated orotic acid levels.

Xu Dengqiu D   Zhang Zehua Z   Zhu Ziqi Z   Wei Wenjing W   Bai Yipeng Y   Wang Wen W   Zhu Yong Y   Alimujiang Abudureyimu A   Shi Yuze Y   Zhang Zhen Z   Li Zhijian Z   Wu Pengkai P   Sun Beicheng B  

Journal of hepatology 20250808


<h4>Background & aims</h4>Identifying the metabolic targets driving liver fibrosis in metabolic-dysfunction-associated steatohepatitis (MASH) is essential for developing effective preventive therapies. However, the metabolic pathways dysregulated in MASH and the underlying molecular mechanisms remain poorly understood. Lon peptidase 1 (LONP1), a mitochondrial protease, is known for its pivotal role in maintaining mitochondrial protein quality surveillance and performing highly regulated proteoly  ...[more]

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