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Deletion of Protein Kinase D3 Promotes Liver Fibrosis in Mice
Author(s) -
Zhang Shuya,
Liu Huan,
Yin Meimei,
Pei Xiuying,
Hausser Angelika,
Ishikawa Eri,
Yamasaki Sho,
Jin Zheng Gen
Publication year - 2020
Publication title -
hepatology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.488
H-Index - 361
eISSN - 1527-3350
pISSN - 0270-9139
DOI - 10.1002/hep.31176
Subject(s) - hepatic stellate cell , knockout mouse , stat protein , cancer research , biology , hepatic fibrosis , endocrinology , cirrhosis , macrophage polarization , kinase , fibrosis , medicine , phosphorylation , phosphatase , stat3 , microbiology and biotechnology , phenotype , gene , biochemistry , receptor
Background and Aims Liver fibrosis (LF) is a central pathological process that occurs in most types of chronic liver diseases. Advanced LF causes cirrhosis, hepatocellular carcinoma, and liver failure. However, the exact molecular mechanisms underlying the initiation and progression of LF remain largely unknown. Approach and Results This study was designed to investigate the role of protein kinase D3 (PKD3; gene name Prkd3 ) in the regulation of liver homeostasis. We generated global Prkd3 knockout ( Prkd3 −/− ) mice and myeloid‐cell–specific Prkd3 knockout ( Prkd3 ∆LysM ) mice, and we found that both Prkd3 −/− mice and Prkd3 ∆LysM mice displayed spontaneous LF. PKD3 deficiency also aggravated CCl 4 ‐induced LF. PKD3 is highly expressed in hepatic macrophages (HMs), and PKD3 deficiency skewed macrophage polarization toward a profibrotic phenotype. Activated profibrotic macrophages produced transforming growth factor beta that, in turn, activates hepatic stellate cells to become matrix‐producing myofibroblasts. Moreover, PKD3 deficiency decreased the phosphatase activity of SH2‐containing protein tyrosine phosphatase‐1 (a bona‐fide PKD3 substrate), resulting in sustained signal transducer and activator of transcription 6 activation in macrophages. In addition, we observed that PKD3 expression in HMs was down‐regulated in cirrhotic human liver tissues. Conclusions PKD3 deletion in mice drives LF through the profibrotic macrophage activation.