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血红素氧合酶 1 缺陷型小鼠中的铁蛋白表达。

Ferroportin expression in haem oxygenase 1-deficient mice.

机构信息

Institute of Genetics and Animal Breeding, Polish Academy of Sciences, Jastrzębiec, Magdalenka, 05-552, Poland.

出版信息

Biochem J. 2013 Jan 1;449(1):69-78. doi: 10.1042/BJ20121139.

Abstract

HO1 (haem oxygenase 1) and Fpn (ferroportin) are key proteins for iron recycling from senescent red blood cells and therefore play a major role in controlling the bioavailability of iron for erythropoiesis. Although important aspects of iron metabolism in HO1-deficient (Hmox1-/-) mice have already been revealed, little is known about the regulation of Fpn expression and its role in HO1 deficiency. In the present study, we characterize the cellular and systemic factors influencing Fpn expression in Hmox1-/- bone marrow-derived macrophages and in the liver and kidney of Hmox1-/- mice. In Hmox1-/- macrophages, Fpn protein was relatively highly expressed under high levels of hepcidin in culture medium. Similarly, despite high hepatic hepcidin expression, Fpn is still detected in Kupffer cells and is also markedly enhanced at the basolateral membrane of the renal tubules of Hmox1-/- mice. Through the activity of highly expressed Fpn, epithelial cells of the renal tubules probably take over the function of impaired system of tissue macrophages in recycling iron accumulated in the kidney. Moreover, although we have found increased expression of FLVCR (feline leukaemia virus subgroup C receptor), a haem exporter, in the kidneys of Hmox1-/- mice, haem level was increased in these organs. Furthermore, we show that iron/haem-mediated toxicity are responsible for renal injury documented in the kidneys of Hmox1-/- mice.

摘要

HO1(血红素加氧酶 1)和 Fpn(铁蛋白)是从衰老的红细胞中回收铁的关键蛋白,因此在控制铁对红细胞生成的生物利用度方面起着重要作用。尽管已经揭示了 HO1 缺陷(Hmox1-/-)小鼠中铁代谢的重要方面,但对 Fpn 表达的调节及其在 HO1 缺陷中的作用知之甚少。在本研究中,我们描述了影响 Hmox1-/-骨髓来源的巨噬细胞和 Hmox1-/-小鼠肝脏和肾脏中 Fpn 表达的细胞和系统因素。在 Hmox1-/-巨噬细胞中,Fpn 蛋白在培养基中高水平的铁调素下相对高表达。同样,尽管肝脏中存在高水平的铁调素,但在 Kupffer 细胞中仍检测到 Fpn,并且在 Hmox1-/-小鼠的肾小管基底外侧膜也明显增强。通过高表达的 Fpn 的活性,肾小管的上皮细胞可能接管了组织巨噬细胞系统受损的功能,从而回收积聚在肾脏中的铁。此外,尽管我们发现 Hmox1-/-小鼠肾脏中 FLVCR(猫白血病病毒亚群 C 受体)的表达增加,这是一种血红素输出蛋白,但这些器官中的血红素水平增加。此外,我们表明铁/血红素介导的毒性是导致 Hmox1-/-小鼠肾脏损伤的原因。

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