Deficiency of the BMP Type I receptor ALK3 partly protects mice from anemia of inflammation.

Q1 Biochemistry, Genetics and Molecular Biology BMC Physiology Pub Date : 2018-02-27 DOI:10.1186/s12899-018-0037-z
Inka Gallitz, Niklas Lofruthe, Lisa Traeger, Nicole Bäumer, Verena Hoerr, Cornelius Faber, Tanja Kuhlmann, Carsten Müller-Tidow, Andrea U Steinbicker
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引用次数: 5

Abstract

Background: Inflammatory stimuli induce the hepatic iron regulatory hormone hepcidin, which contributes to anaemia of inflammation (AI). Hepcidin expression is regulated by the bone morphogenetic protein (BMP) and the interleukin-6 (IL-6) signalling pathways. Prior results indicate that the BMP type I receptor ALK3 is mainly involved in the acute inflammatory hepcidin induction four and 72 h after IL-6 administration. In this study, the role of ALK3 in a chronic model of inflammation was investigated. The intact, heat-killed bacterium Brucella abortus (BA) was used to analyse its effect on the development of inflammation and hypoferremia in mice with hepatocyte-specific Alk3-deficiency (Alk3fl/fl; Alb-Cre) compared to control (Alk3fl/fl) mice.

Results: An iron restricted diet prevented development of the iron overload phenotype in mice with hepatocyte-specific Alk3 deficiency. Regular diet leads to iron overload and increased haemoglobin levels in these mice, which protects from the development of AI per se. Fourteen days after BA injection Alk3fl/fl; Alb-Cre mice presented milder anaemia (Hb 16.7 g/dl to 11.6 g/dl) compared to Alk3fl/fl control mice (Hb 14.9 g/dl to 8.6 g/dl). BA injection led to an intact inflammatory response in all groups of mice. In Alk3fl/fl; Alb-Cre mice, SMAD1/5/8 phosphorylation was reduced after BA as well as after infection with Staphylococcus aureus. The reduction of the SMAD1/5/8 signalling pathway due to hepatocyte-specific Alk3 deficiency partly suppressed the induction of STAT3 signalling.

Conclusion: The results reveal in vivo, that 1) hepatocyte-specific Alk3 deficiency partly protects from AI, 2) the development of hypoferremia is partly dependent on ALK3, and 3) the ALK3/BMP/hepcidin axis may serve as a possible therapeutic target to attenuate AI.

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缺乏BMP I型受体ALK3部分保护小鼠免于炎症性贫血。
背景:炎症刺激诱导肝铁调节激素hepcidin的产生,导致炎症性贫血(AI)。Hepcidin的表达受骨形态发生蛋白(BMP)和白细胞介素-6 (IL-6)信号通路的调控。先前的研究结果表明,BMP I型受体ALK3主要参与IL-6给药后4和72 h的急性炎性hepcidin诱导。本研究探讨了ALK3在慢性炎症模型中的作用。用完整的热灭活的流产布鲁氏菌(BA)分析其对肝细胞特异性alk3缺乏症(Alk3fl/fl;Alb-Cre)与对照组(Alk3fl/fl)相比。结果:铁限制饮食阻止了肝细胞特异性Alk3缺乏小鼠铁超载表型的发展。常规饮食会导致这些小鼠体内的铁过载和血红蛋白水平升高,从而防止AI本身的发展。BA注射后14天;与Alk3fl/fl对照小鼠(Hb 14.9 g/dl至8.6 g/dl)相比,Alb-Cre小鼠表现出较轻的贫血(Hb 16.7 g/dl至11.6 g/dl)。BA注射在各组小鼠中均引起完整的炎症反应。在Alk3fl / fl;BA和金黄色葡萄球菌感染后,Alb-Cre小鼠SMAD1/5/8磷酸化水平降低。肝细胞特异性Alk3缺乏导致SMAD1/5/8信号通路的减少部分抑制了STAT3信号的诱导。结论:体内实验结果表明:1)肝细胞特异性Alk3缺乏对AI有一定的保护作用;2)低铁血症的发生部分依赖于Alk3; 3) Alk3 /BMP/hepcidin轴可能是减轻AI的治疗靶点。
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来源期刊
BMC Physiology
BMC Physiology Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
9.60
自引率
0.00%
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0
期刊介绍: BMC Physiology is an open access journal publishing original peer-reviewed research articles in cellular, tissue-level, organismal, functional, and developmental aspects of physiological processes. BMC Physiology (ISSN 1472-6793) is indexed/tracked/covered by PubMed, MEDLINE, BIOSIS, CAS, EMBASE, Scopus, Zoological Record and Google Scholar.
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