Pilon Marinus, Abdel-Ghany Salah E, Van Hoewyk Douglas, Ye Hong, Pilon-Smits Elizabeth A H
Biology Department, Colorado State University, Fort Collins, Colorado 80523, USA.
Genet Eng (N Y). 2006;27:101-17. doi: 10.1007/0-387-25856-6_7.
Iron-sulfur (Fe-S) clusters are co-factors of proteins that perform a number of biological roles, including electron transfer, redox and non-redox catalysis, regulation of gene expression, and as sensors within all living organisms, prokaryotes and eukaryotes. These clusters are thought to be among the oldest structures found in biological cells. In chloroplasts, Fe-S clusters play a key role in photosynthetic electron transport as well as nitrogen and sulfur assimilation. The capacity of the Fe atom in Fe-S clusters to take up an electron reversibly provides the required electron carrier capacity in these pathways. Iron and sulfur limitation both affect plant primary production and growth. It has long been known that iron deficiency leads to defects in photosynthesis and bleaching in young leaves, phenomena that are closely linked to a defect in chloroplastic photosystem-I (PSI) accumulation, a major Fe-S containing protein complex in plants. Although the functional importance of Fe-S cluster proteins is evident and isolated chloroplasts have been shown to be able to synthesize their own Fe-S clusters, much is yet to be learned about the biosynthesis of Fe-S proteins in plastids. The recent discovery of a NifS-like protein in plastids has hinted to the existence of an assembly machinery related to bacterial Fe-S assembly systems. This chapter aims to summarize what we presently know about the assembly of Fe-S clusters in plants with an emphasis on green plastids.
铁硫(Fe-S)簇是蛋白质的辅因子,在许多生物学过程中发挥作用,包括电子传递、氧化还原和非氧化还原催化、基因表达调控,以及作为所有生物(原核生物和真核生物)中的传感器。这些簇被认为是生物细胞中发现的最古老的结构之一。在叶绿体中,Fe-S簇在光合电子传递以及氮和硫同化中起关键作用。Fe-S簇中的Fe原子可逆地接受电子的能力为这些途径提供了所需的电子载体能力。铁和硫的限制都会影响植物的初级生产和生长。长期以来,人们已知缺铁会导致光合作用缺陷和幼叶白化,这些现象与叶绿体光系统I(PSI)积累缺陷密切相关,PSI是植物中一种主要的含铁硫蛋白复合物。尽管Fe-S簇蛋白的功能重要性是显而易见的,并且已证明分离的叶绿体能够合成它们自己的Fe-S簇,但关于质体中Fe-S蛋白的生物合成仍有许多有待了解之处。最近在质体中发现的一种类NifS蛋白暗示了存在一种与细菌Fe-S组装系统相关的组装机制。本章旨在总结我们目前对植物中Fe-S簇组装的了解,重点是绿色质体。