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铁蛋白L亚基和H亚基在转录后水平受到不同调控。

Ferritin L and H subunits are differentially regulated on a post-transcriptional level.

作者信息

Sammarco Mimi C, Ditch Scott, Banerjee Ayan, Grabczyk Ed

机构信息

Department of Genetics, Louisiana State University Health Sciences Center, New Orleans, Louisiana 70112, USA.

出版信息

J Biol Chem. 2008 Feb 22;283(8):4578-87. doi: 10.1074/jbc.M703456200. Epub 2007 Dec 26.

Abstract

Ferritin plays an important role in the storage and release of iron, an element utilized in cellular processes such as respiration, gene regulation, and DNA replication and repair. Ferritin in animals is composed of 24 ferritin L (FTL) and ferritin H (FTH) subunits in ratios that vary in different cell types. Because the subunits are not functionally interchangeable, both L and H units are critical for maintaining iron homeostasis and protecting against iron overload. FTL and FTH are regulated primarily at a post-transcriptional level in response to cellular iron concentrations. Individual regulation of FTL and FTH is of much interest, and although transcriptional differences between FTL and FTH have been shown, differences in their post-transcriptional regulation have not been evaluated. We report here that FTL and FTH are differentially regulated in 1% oxygen on a post-transcriptional level. We have designed a quantitative assay system sensitive enough to detect differences between FTL and FTH iron regulatory elements (IREs) that a standard electrophoretic mobility shift assay does not. The FTL IRE is the primary responder in the presence of an iron donor in hypoxic conditions, and this response is reflected in endogenous FTL protein levels. These results provide evidence that FTL and FTH subunits respond independently to cellular iron concentrations and underscore the importance of evaluating FTL and FTH IREs separately.

摘要

铁蛋白在铁的储存和释放中发挥着重要作用,铁是一种参与细胞呼吸、基因调控以及DNA复制与修复等细胞过程的元素。动物体内的铁蛋白由24个铁蛋白L(FTL)和铁蛋白H(FTH)亚基组成,其比例在不同细胞类型中有所不同。由于这些亚基在功能上不可互换,L和H亚基对于维持铁稳态以及防止铁过载都至关重要。FTL和FTH主要在转录后水平上根据细胞内铁浓度进行调控。对FTL和FTH的单独调控备受关注,尽管已经显示出FTL和FTH在转录上存在差异,但它们在转录后调控方面的差异尚未得到评估。我们在此报告,FTL和FTH在1%氧气浓度下于转录后水平受到不同调控。我们设计了一种定量检测系统,其灵敏度足以检测标准电泳迁移率变动分析无法检测到的FTL和FTH铁调节元件(IRE)之间的差异。在缺氧条件下存在铁供体时,FTL IRE是主要响应者,这种响应反映在内源性FTL蛋白水平上。这些结果提供了证据,表明FTL和FTH亚基对细胞内铁浓度有独立反应,并强调了分别评估FTL和FTH IRE的重要性。

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