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衰老过程中亚铁离子稳态失衡的直接成像

Direct imaging of ferrous iron dyshomeostasis in ageing .

作者信息

James Simon A, Roberts Blaine R, Hare Dominic J, de Jonge Martin D, Birchall Ian E, Jenkins Nicole L, Cherny Robert A, Bush Ashley I, McColl Gawain

机构信息

Australian Synchrotron , Clayton , Victoria , Australia.

Commonwealth Scientific and Industrial Research Organisation , Clayton , Victoria , Australia.

出版信息

Chem Sci. 2015 May 1;6(5):2952-2962. doi: 10.1039/c5sc00233h. Epub 2015 Mar 3.

Abstract

Iron is essential for eukaryotic biochemistry. Systematic trafficking and storage is required to maintain supply of iron while preventing it from catalysing unwanted reactions, particularly the generation of oxidising reactive species. Iron dyshomeostasis has been implicated in major age-associated diseases including cancers, neurodegeneration and heart disease. Here, we employ population-level X-ray fluorescence imaging and native-metalloproteomic analysis to determine that altered iron coordination and distribution is a pathological imperative of ageing in the nematode, Our approach provides a method to simultaneously study iron metabolism across different scales of biological organisation, from populations to cells. Here we report how and where iron homeostasis is lost during ageing, and its relationship to the age-related elevation of damaging reactive oxygen species. We find that wild types utilise ferritin to sustain longevity, buffering against exogenous iron and showing rapid ageing if ferritin is ablated. After reproduction, escape of iron from safe-storage in ferritin raised cellular Fe load in the ageing , and increased generation of reactive species. These findings support the hypothesis that iron-mediated processes drive senescence. We propose that loss of iron homeostasis may be a fundamental and inescapable consequence of ageing that could represent a critical target for therapeutic strategies to improve health outcomes in ageing.

摘要

铁对于真核生物的生物化学过程至关重要。需要进行系统的运输和储存以维持铁的供应,同时防止其催化不必要的反应,特别是氧化活性物质的产生。铁稳态失衡与包括癌症、神经退行性疾病和心脏病在内的主要衰老相关疾病有关。在这里,我们采用群体水平的X射线荧光成像和天然金属蛋白质组分析来确定铁配位和分布的改变是线虫衰老的病理必然结果。我们的方法提供了一种从群体到细胞在不同生物组织尺度上同时研究铁代谢的方法。在这里,我们报告了衰老过程中铁稳态在何处以及如何丧失,以及它与衰老相关的有害活性氧升高的关系。我们发现野生型利用铁蛋白来维持寿命,缓冲外源铁,如果铁蛋白被消除则会迅速衰老。繁殖后,铁从铁蛋白的安全储存中逸出,增加了衰老细胞中的铁负荷,并增加了活性物质的产生。这些发现支持了铁介导的过程驱动衰老的假说。我们提出,铁稳态的丧失可能是衰老的一个基本且不可避免的后果,这可能代表了改善衰老健康结果的治疗策略的关键靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfed/5490054/d0f505f0d34f/c5sc00233h-f1.jpg

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