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糖甜菜叶绿体中铁的摄取和掺入。

Uptake and incorporation of iron in sugar beet chloroplasts.

机构信息

Department of Plant Physiology and Molecular Plant Biology, Institute of Biology, Eötvös Loránd University, Pázmány P. lane 1/C, Budapest 1117, Hungary.

出版信息

Plant Physiol Biochem. 2012 Mar;52:91-7. doi: 10.1016/j.plaphy.2011.11.010. Epub 2011 Dec 8.

Abstract

Chloroplasts contain 80-90% of iron taken up by plant cells. Though some iron transport-related envelope proteins were identified recently, the mechanism of iron uptake into chloroplasts remained unresolved. To shed more light on the process of chloroplast iron uptake, trials were performed with isolated intact chloroplasts of sugar beet (Beta vulgaris). Iron uptake was followed by measuring the iron content of chloroplasts in the form of ferrous-bathophenantroline-disulphonate complex after solubilising the chloroplasts in reducing environment. Ferric citrate was preferred to ferrous citrate as substrate for chloroplasts. Strong dependency of ferric citrate uptake on photosynthetic electron transport activity suggests that ferric chelate reductase uses NADPH, and is localised in the inner envelope membrane. The K(m) for iron uptake from ferric-citrate pool was 14.65 ± 3.13 μM Fe((III))-citrate. The relatively fast incorporation of (57)Fe isotope into Fe-S clusters/heme, detected by Mössbauer spectroscopy, showed the efficiency of the biosynthetic machinery of these cofactors in isolated chloroplasts. The negative correlation between the chloroplast iron concentration and the rate of iron uptake refers to a strong feedback regulation of the uptake.

摘要

叶绿体含有植物细胞吸收的铁的 80-90%。尽管最近鉴定了一些与铁转运相关的包膜蛋白,但叶绿体中铁的摄取机制仍未解决。为了更深入地了解叶绿体铁摄取的过程,我们使用甜菜(Beta vulgaris)的完整分离叶绿体进行了实验。通过在还原环境中溶解叶绿体后,用亚铁-苯并菲咯啉-二磺酸盐复合物测量叶绿体中的铁含量,来跟踪铁的摄取。与亚铁柠檬酸相比,柠檬酸铁被优先用作叶绿体的底物。柠檬酸铁的摄取强烈依赖于光合作用电子传递活性,表明铁螯合还原酶使用 NADPH,并且定位于内包膜上。从柠檬酸铁池中铁的摄取的 K(m) 值为 14.65±3.13μM Fe((III))-柠檬酸。穆斯堡尔光谱检测到(57)Fe 同位素快速掺入 Fe-S 簇/血红素中,表明了这些辅助因子在分离的叶绿体中的生物合成机制的效率。叶绿体中铁浓度与铁摄取率之间的负相关表明了摄取的强烈反馈调节。

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