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Hepatic Deletion of Janus Kinase 2 Counteracts Oxidative Stress in Mice

Themanns, Madeleine and Mueller, Kristina M. and Kessler, Sonja M. and Golob-Schwarzl, Nicole and Mohr, Thomas and Kaltenecker, Doris and Bourgeais, Jerome and Paier-Pourani, Jamile and Friedbichler, Katrin and Schneller, Doris and Schlederer, Michaela and Zebedin-Brandl, Eva and Terracciano, Luigi M. and Han, Xiaonan and Kenner, Lukas and Wagner, Kay-Uwe and Mikulits, Wolfgang and Kozlov, Andrey V. and Heim, Markus H. and Gouilleux, Fabrice and Haybaeck, Johannes and Moriggl, Richard. (2016) Hepatic Deletion of Janus Kinase 2 Counteracts Oxidative Stress in Mice. Scientific Reports, 6. p. 34719.

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Official URL: https://edoc.unibas.ch/61751/

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Abstract

Genetic deletion of the tyrosine kinase JAK2 or the downstream transcription factor STAT5 in liver impairs growth hormone (GH) signalling and thereby promotes fatty liver disease. Hepatic STAT5 deficiency accelerates liver tumourigenesis in presence of high GH levels. To determine whether the upstream kinase JAK2 exerts similar functions, we crossed mice harbouring a hepatocyte-specific deletion of JAK2 (JAK2Δhep) to GH transgenic mice (GHtg) and compared them to GHtgSTAT5Δhep mice. Similar to GHtgSTAT5Δhep mice, JAK2 deficiency resulted in severe steatosis in the GHtg background. However, in contrast to STAT5 deficiency, loss of JAK2 significantly delayed liver tumourigenesis. This was attributed to: (i) activation of STAT3 in STAT5-deficient mice, which was prevented by JAK2 deficiency and (ii) increased detoxification capacity of JAK2-deficient livers, which diminished oxidative damage as compared to GHtgSTAT5Δhep mice, despite equally severe steatosis and reactive oxygen species (ROS) production. The reduced oxidative damage in JAK2-deficient livers was linked to increased expression and activity of glutathione S-transferases (GSTs). Consistent with genetic deletion of Jak2, pharmacological inhibition and siRNA-mediated knockdown of Jak2 led to significant upregulation of Gst isoforms and to reduced hepatic oxidative DNA damage. Therefore, blocking JAK2 function increases detoxifying GSTs in hepatocytes and protects against oxidative liver damage.
Faculties and Departments:03 Faculty of Medicine > Bereich Medizinische Fächer (Klinik) > Hepatologie > Hepatologie (Heim)
03 Faculty of Medicine > Departement Klinische Forschung > Bereich Medizinische Fächer (Klinik) > Hepatologie > Hepatologie (Heim)
03 Faculty of Medicine > Departement Biomedizin > Department of Biomedicine, University Hospital Basel > Hepatology Laboratory (Heim)
UniBasel Contributors:Heim, Markus H.
Item Type:Article, refereed
Article Subtype:Research Article
Publisher:Nature Publishing Group
e-ISSN:2045-2322
Note:Publication type according to Uni Basel Research Database: Journal article
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Last Modified:22 Jul 2020 15:46
Deposited On:22 Jul 2020 15:46

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