Department of Plant Physiology and Molecular Plant Biology, Institute of Biology, ELTE Eötvös Loránd University, Budapest, Hungary.
Methods Mol Biol. 2023;2665:147-171. doi: 10.1007/978-1-0716-3183-6_12.
Iron has a crucial role in plastid biology. Iron is a required cofactor for the operation of the photosynthetic functions and other metabolic pathways. Despite the importance of the iron homeostasis in chloroplasts, the functional analysis of the plastidial iron uptake and homeostasis still lack a consensus methodology. Here, we describe a sequence of subsequent techniques that can be applied in functional characterization of proteins involved in iron uptake and incorporation into chloroplasts as well as of the non-transport protein members of the chloroplast iron homeostasis. Since the ferrous iron ligation of bathophenantroline disulfonate is specific and not disrupted by the presence of other transition metals, it offers a simple way for iron quantification both in solubilized chloroplast samples as well as in ferric chelate reductase activity measurements.
铁在质体生物学中起着至关重要的作用。铁是光合作用功能和其他代谢途径运行所必需的辅因子。尽管质体中的铁稳态非常重要,但对于质体铁摄取和稳态的功能分析仍然缺乏共识方法。在这里,我们描述了一系列后续技术,可应用于参与铁摄取和整合到叶绿体以及非转运蛋白成员的功能特征的研究叶绿体铁稳态。由于二价亚铁与邻菲咯啉二磺酸钠的结合是特异性的,并且不会被其他过渡金属所破坏,因此它为在可溶性叶绿体样品以及铁螯合还原酶活性测量中铁的定量提供了一种简单的方法。