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Copper-Dependent Iron Assimilation Pathway in the Model Photosynthetic Eukaryote Chlamydomonas reinhardtii

机译:模型光合作用真核生物衣藻衣藻中的铜依赖性铁同化途径

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The unicellular green alga Chlamydomonas reinhardtii is a valuable model for studying metal metabolism in a photosynthetic background. A search of the Chlamydomonas expressed sequence tag database led to the identification of several components that form a copper-dependent iron assimilation pathway related to the high-affinity iron uptake pathway defined originally for Saccharomyces cerevisiae. They include a multicopper ferroxidase (encoded by Fox1), an iron permease (encoded by Ftr1), a copper chaperone (encoded by Atx1), and a copper-transporting ATPase. A cDNA, Fer1, encoding ferritin for iron storage also was identified. Expression analysis demonstrated that Fox1 and Ftr1 were coordinately induced by iron deficiency, as were Atx1 and Fer1, although to lesser extents. In addition, Fox1 abundance was regulated at the posttranscriptional level by copper availability. Each component exhibited sequence relationship with its yeast, mammalian, or plant counterparts to various degrees; Atx1 of C. reinhardtii is also functionally related with respect to copper chaperone and antioxidant activities. Fox1 is most highly related to the mammalian homologues hephaestin and ceruloplasmin; its occurrence and pattern of expression in Chlamydomonas indicate, for the first time, a role for copper in iron assimilation in a photosynthetic species. Nevertheless, growth of C. reinhardtii under copper- and iron-limiting conditions showed that, unlike the situation in yeast and mammals, where copper deficiency results in a secondary iron deficiency, copper-deficient Chlamydomonas cells do not exhibit symptoms of iron deficiency. We propose the existence of a copper-independent iron assimilation pathway in this organism.
机译:单细胞绿藻 Chlamydomonas reinhardtii 是研究光合作用背景下金属代谢的有价值模型。搜索衣藻的表达序列标签数据库后,鉴定了一些成分,这些成分形成了铜依赖性铁同化途径,该途径与最初为酿酒酵母定义的高亲和力铁摄取途径有关。 / em>。它们包括一个多铜铁氧化酶(由 Fox1 编码),一个铁通透酶(由 Ftr1 编码),一个铜分子伴侣(由 Atx1 编码),和铜转运ATPase。还确定了编码铁蛋白用于铁存储的cDNA, Fer1 。表达分析表明, Fox1 Ftr1 是铁缺乏引起的, Atx1 Fer1 也是由铁缺乏引起的。程度较小。另外,Fox1的丰度在转录后水平上受到铜可用性的调节。每种成分均与其酵母,哺乳动物或植物对应物表现出不同程度的序列关系。 C的Atx1。 reinhardtii 在功能上也与铜伴侣和抗氧化活性有关。 Fox1与哺乳动物的hephaestin和ceruloplasmin同源性最高。它在衣藻中的发生和表达方式首次表明,铜在光合物种中对铁的同化作用。尽管如此, C的增长。 reinhardtii 在限制铜和铁的条件下显示,与酵母和哺乳动物的情况不同,铜缺乏导致继发性铁缺乏,而铜缺乏的衣藻细胞没有表现出症状铁缺乏症。我们提出在这种生物中存在铜不依赖铁的同化途径。

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