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Iron-sulfur stoichiometry and structure of iron-sulfur clusters in three-iron proteins: Evidence for [3Fe-4S] clusters

机译:三铁蛋白中铁硫的化学计量和铁硫簇的结构:[3Fe-4S]簇的证据

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摘要

Beef heart aconitase contains 3Fe clusters in its inactive and 4Fe clusters in its active form. The fully active form can be restored from the inactive one by insertion of Fe2+, whereas S2- is not required. Chemical analyses for iron and labile sulfide yield Fe/S2- ratios of 0.66-0.74 for the inactive and 0.90-1.03 for the active form. Sulfane sulfur (S0) was not detected. We propose on the basis of these data that the inactive form may arise from the active one by loss of one iron only per cluster with the sulfur remaining as S2- in a [3Fe-4S] structure. Measurements by extended x-ray absorption fine structure (EXAFS) spectroscopy on the 3Fe form of aconitase yield a Fe··S distance of 2.24 Å and a Fe··Fe distance of 2.71 Å. This Fe··Fe distance is in agreement with that obtained by EXAFS on ferredoxin II of Desulfovibrio gigas, another 3Fe protein, but disagrees with Fe··Fe distances observed for the 3Fe cluster of Azotobacter vinelandii ferredoxin I by x-ray diffraction—namely, 4.1 Å. We suggest that this difference may be due to the presence of a [3Fe-3S] structure in the Azotobacter ferredoxin I crystals vs. a [3Fe-4S] structure in liquid or frozen solutions of aconitase. The [3Fe-3S] cluster has been shown to have a relatively flat twist-boat structure, whereas a [3Fe-4S] cluster could be expected to essentially maintain the compact structure of the [4Fe-4S] cluster. This would explain the differences in Fe··Fe distances. Two possible structural models for a [3Fe-4S] cluster are discussed.
机译:牛肉心乌头酸酶的非活性形式包含3Fe簇,活性形式包含4Fe簇。可以通过插入Fe2 +从完全没有活性的形式恢复完全活性,而不需要S2-。铁和不稳定硫化物的化学分析得出,非活性形式的Fe / S2-比为0.66-0.74,活性形式为0.90-1.03。未检测到硫磺(SO)。我们根据这些数据提出,非活性形式可能是由活性形式产生的,即每簇仅损失一个铁,而硫以[2Fe-4S]结构形式保留为S2-。通过延长的X射线吸收精细结构(EXAFS)光谱对乌头酸酶的3Fe形式进行测量,得出Fe··S距离为2.24Å,Fe··Fe距离为2.71Å。此Fe··Fe距离与EXAFS对另一种3Fe蛋白Desulfovibrio gigas的铁氧还蛋白II所获得的距离一致,但与通过X射线衍射观察到的葡萄固氮铁氧还蛋白I的3Fe簇的Fe··Fe距离不同。 ,4.1Å。我们建议,这种差异可能是由于固氮铁氧还蛋白I晶体中[3Fe-3S]结构相对于乌头酸酶液体或冷冻溶液中[3Fe-4S]结构的存在。已显示[3Fe-3S]团簇具有相对平坦的扭曲船结构,而[3Fe-4S]团簇可望基本上保持[4Fe-4S]团簇的紧凑结构。这可以解释Fe··Fe距离的差异。讨论了[3Fe-4S]簇的两种可能的结构模型。

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