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乌头酸酶的穆斯堡尔谱研究。底物与抑制剂结合、反应中间体以及还原态3铁和4铁簇的超精细相互作用

Mössbauer studies of aconitase. Substrate and inhibitor binding, reaction intermediates, and hyperfine interactions of reduced 3Fe and 4Fe clusters.

作者信息

Kent T A, Emptage M H, Merkle H, Kennedy M C, Beinert H, Münck E

出版信息

J Biol Chem. 1985 Jun 10;260(11):6871-81.

PMID:2987236
Abstract

Active beef heart aconitase contains a [4Fe-4S] cluster. One iron of the cluster, Fea, is labile and can be removed easily by oxidation in air to yield the [3Fe-4S]1+ cluster of inactive aconitase. We have previously shown that substrate binds to Fea. We have continued our Mössbauer studies by further investigating the active and inactive forms of the enzyme. When active aconitase, [4Fe-4S]2+, is mixed with substrate, two species (substrates or intermediates bound to Fea) labeled S1 and S2 are obtained. With the nitroanalogs of citrate and isocitrate, thought to be transition state analogs, and fluorocitrate, species S2, but not S1, is observed, suggesting that S2 represents a carbanion transition state complex. We have prepared Mössbauer samples by rapid mix/rapid freeze techniques. Using either citrate, isocitrate or cis-aconitate, the natural substrates, we have been able to detect at 0 degree C reaction intermediates in the 5-35 ms time range and, studying enzyme substrate interactions at subzero temperatures in a water/methanol/ethylene glycol solvent, we have observed new species when substrates were added at -60 degrees C. Details of these experiments are given, although in neither case can unique interpretations be offered at this time. We have also investigated reduced active aconitase ([4Fe-4S]1+; EPR at g = 1.94) in the presence of substrate with material selectively enriched with 57Fe in either Fea or the other three cluster sites. The spectra were analyzed with a spin Hamiltonian, and the results are discussed and interpreted in terms of three inequivalent Fe sites in the cluster. Finally, we have studied enzyme containing the reduced [3Fe-4S]0 cluster. There is no indication that citrate binds to the 3Fe cluster, and since no significant activity was observed, we conclude that aconitase containing a 3Fe cluster is not active in either oxidation state.

摘要

活性牛心乌头酸酶含有一个[4Fe-4S]簇。该簇中的一个铁原子Fea不稳定,在空气中氧化时很容易被除去,从而产生无活性乌头酸酶的[3Fe-4S]1+簇。我们之前已经表明底物与Fea结合。我们通过进一步研究该酶的活性和无活性形式继续进行了穆斯堡尔研究。当活性乌头酸酶[4Fe-4S]2+与底物混合时,会得到两种被标记为S1和S2的物质(与Fea结合的底物或中间体)。对于被认为是过渡态类似物的柠檬酸盐和异柠檬酸盐的硝基类似物以及氟柠檬酸盐,只观察到了物质S2,而没有观察到S1,这表明S2代表一种碳负离子过渡态复合物。我们通过快速混合/快速冷冻技术制备了穆斯堡尔样品。使用柠檬酸盐、异柠檬酸盐或顺乌头酸盐这些天然底物,我们能够在0℃下检测到5-35毫秒时间范围内的反应中间体,并且在水/甲醇/乙二醇溶剂中在零下温度研究酶与底物的相互作用时,当在-60℃添加底物时我们观察到了新的物质。给出了这些实验的详细信息,不过目前在这两种情况下都无法给出唯一的解释。我们还在底物存在的情况下,用在Fea或其他三个簇位点选择性富集57Fe的材料研究了还原态活性乌头酸酶([4Fe-4S]1+;g = 1.94时的电子顺磁共振)。用自旋哈密顿量对光谱进行了分析,并根据簇中三个不等价的铁位点对结果进行了讨论和解释。最后,我们研究了含有还原态[3Fe-4S]0簇的酶。没有迹象表明柠檬酸盐与3Fe簇结合,并且由于未观察到显著活性,我们得出结论,含有3Fe簇的乌头酸酶在任何一种氧化态下都没有活性。

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