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X 射线剂量依赖性结构变化的[2Fe-2S]铁氧还蛋白从衣藻。

X-ray dose-dependent structural changes of the [2Fe-2S] ferredoxin from Chlamydomonas reinhardtii.

机构信息

Division of Protein Structural Biology, Institute for Protein Research, Osaka University, 3-2 Yamadaoka, Suita, Osaka 565-0871, Japan.

Department of Macromolecular Science, Graduate School of Science, Osaka University, 1-1 Machikaneyama, Toyonaka, Osaka 560-0043, Japan.

出版信息

J Biochem. 2020 Jun 1;167(6):549-555. doi: 10.1093/jb/mvaa045.

Abstract

Plant-type ferredoxin (Fd) is an electron transfer protein in chloroplast. Redox-dependent structural change of Fd controls its association with and dissociation from Fd-dependent enzymes. Among many X-ray structures of oxidized Fd have been reported so far, very likely a given number of them was partially reduced by strong X-ray. To understand the precise structural change between reduced and oxidized Fd, it is important to know whether the crystals of oxidized Fd may or may not be reduced during the X-ray experiment. We prepared the thin plate-shaped Fd crystals from Chlamydomonas reinhardtii and monitored its absorption spectra during experiment. Absorption spectra of oxidized Fd crystals were clearly changed to that of reduced form in an X-ray dose-dependent manner. In another independent experiment, the X-ray diffraction images obtained from different parts of one single crystal were sorted and merged to form two datasets with low and high X-ray doses. An Fo-Fo map calculated from the two datasets showed that X-ray reduction causes a small displacement of the iron atoms in the [2Fe-2S] cluster. Both our spectroscopic and crystallographic studies confirm X-ray dose-dependent reduction of Fd, and suggest a structural basis for its initial reduction step especially in the core of the cluster.

摘要

植物型铁氧还蛋白(Fd)是叶绿体中的一种电子传递蛋白。Fd 的氧化还原依赖的结构变化控制着它与 Fd 依赖性酶的结合和解离。迄今为止,已经报道了许多氧化 Fd 的 X 射线结构,很可能其中有一些是被强 X 射线部分还原的。为了理解还原态和氧化态 Fd 之间的确切结构变化,了解氧化 Fd 晶体在 X 射线实验中是否可能被还原是很重要的。我们从莱茵衣藻中制备了薄片状 Fd 晶体,并在实验过程中监测其吸收光谱。X 射线剂量依赖性地清楚地改变了氧化 Fd 晶体的吸收光谱,使其变为还原形式。在另一个独立的实验中,从单个晶体的不同部分获得的 X 射线衍射图像被分类并合并成两个具有低和高 X 射线剂量的数据集。从这两个数据集计算的 Fo-Fo 图表明,X 射线还原导致 [2Fe-2S] 簇中铁原子的小位移。我们的光谱和晶体学研究都证实了 Fd 的 X 射线剂量依赖性还原,并为其初始还原步骤提供了结构基础,特别是在簇的核心部分。

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