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Redox Reactions of the Iron-Sulfur Cluster in a Ribosomal RNA Methyltransferase RumA

机译:核糖体RNA甲基转移酶RumA中铁硫簇的氧化还原反应

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摘要

An unprecedented [4Fe-4S] iron-sulfur cluster was found in RumA, the enzyme that methylates U1939 in Escherichia coli 23 S ribosomal RNA (Agarwalla, S., Kealey, J. T., Santi, D. V., and Stroud, R. M. (2002) J. Biol. Chem. 277, 8835–8840; Lee, T. T., Agarwalla, S., and Stroud, R. M. (2004) Structure 12, 397–407). Methyltransferase reactions do not involve a redox step. To understand the structural and functional roles of the cluster in RumA, we have characterized redox reactions of the iron-sulfur cluster. As isolated aerobically, RumA exhibits a visible absorbance maximum at 390 nm and is EPR silent. It cannot be reduced by anaerobic additions of dithionite. Photoreduction by deazariboflavin/EDTA gives EPR spectra, the quantity (56% of S = 1/2 species) and details (gav ~ 1.96–1.93) of which indicate a [4Fe-4S]1+ cluster in the reduced RumA. Oxidation of RumA by ferricyanide leads to loss of the 390-nm band and appearance of lower intensity bands at 444 and 520 nm. EPR spectra of ferricyanide-oxidized RumA show a fraction (<8%) of the FeS cluster trapped in the [3Fe-4S]1+ form (gav ~ 2.011) together with unusual radical-like spectrum (g′ values 2.015, 2.00, and 1.95). RumA also reacts with nitric oxide to give EPR spectra characteristic of the protein-bound iron dinitrosyl species. Oxidation of the cluster leads to its decomposition and that could be a mechanism for regulating the activity of RumA under conditions of oxidative stress in the cell. Sequence data base searches revealed that RumA homologs are widespread in various kingdoms of life and contain a conserved and unique iron-sulfur cluster binding motif, CX5CGGC.
机译:在RumA中发现了前所未有的[4Fe-4S]铁硫簇,该酶使大肠杆菌23 S核糖体RNA中的U1939甲基化(Agarwalla,S.,Kealey,JT,Santi,DV和Stroud,RM(2002)J生物化学277,8835-8840; Lee,TT,Agarwalla,S。和Stroud,RM(2004)结构12,397-407)。甲基转移酶反应不涉及氧化还原步骤。为了了解RumA中团簇的结构和功能作用,我们对铁硫团簇的氧化还原反应进行了表征。如需氧隔离,RumA在390 nm处显示最大可见吸光度,并且是EPR静音的。连二亚硫酸盐的厌氧添加不能将其还原。脱氧核黄素/ EDTA光还原得到的EPR光谱,其数量(S的56%= 1/2种)和详细信息(gav〜1.96–1.93)表明[4Fe-4S] 1 + 团簇在降低的RumA中。铁氰化物氧化RumA会导致390 nm谱带损失,并在444和520 nm处出现较低强度的谱带。铁氰化物氧化的RumA的EPR谱显示以[3Fe-4S] 1 + 形式(gav〜2.011)捕获的FeS簇的一部分(<8%),以及不寻常的类似自由基的光谱( g'值2.015、2.00和1.95)。 RumA还与一氧化氮发生反应,从而给出了蛋白质结合的铁二亚硝酰基物质的EPR光谱特征。簇的氧化导致其分解,这可能是在细胞氧化应激条件下调节RumA活性的机制。序列数据库搜索显示,RumA同源物广泛存在于各个生命王国中,并包含一个保守且独特的铁硫簇结合基序CX5CGGC。

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