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首页> 外文期刊>Chemical science >Inhibition of the 4Fe-4S proteins IspG and IspH: an EPR, ENDOR and HYSCORE investigation
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Inhibition of the 4Fe-4S proteins IspG and IspH: an EPR, ENDOR and HYSCORE investigation

机译:抑制4Fe-4S蛋白IspG和IspH:EPR,ENDOR和HYSCORE研究

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IspG and IspH are proteins that are involved in isoprenoid biosynthesis in most bacteria as well as in malaria parasites and are important drug targets. They contain cubane-type 4Fe-4S clusters that are involved in unusual 2H~+/2e~-reductions. Here, we report the results of electron paramagnetic resonance spectroscopic investigations of the binding of amino-and thiolo-HMBPP (HMBPP = £-1-hydroxy-2-methyl-but-2-enyl 4-diphosphate) IspH substrate-analog inhibitors to both proteins, as well as the binding of HMBPP and an acetylene diphosphate inhibitor, to IspG. The results show that amino-HMBPP binds to reduced IspH by Fe-C π-bonding with the olefinic carbons interacting with the unique 4~(th) Fe in the 4Fe-4S cluster, quite different to the direct Fe-N ligation seen with the oxidized protein. No such π-complex is observed when amino-HMBPP binds to reduced IspG. No EPR signal is observed with IspH in the presence of dithionite and thiolo-HMBPP, suggesting that the 4Fe-4S cluster is not reduced, consistent with the presence of a 420 nm feature in the absorption spectrum (characteristic of an oxidized cluster). However, with IspG, the EPR spectrum in the presence of dithionite and thiolo-HMBPP is very similar to that seen with HMBPP. The binding of HMBPP to IspG was studied using hyperfine sublevel correlation spectroscopy with ~(17)O and ~(13)C labeled samples: the results rule out direct Fe-0 bonding and indicate π-bonding. Finally, the binding to IspG of a potent acetylene diphosphate inhibitor was studied by using electron-nuclear double resonance spectroscopy with ~(13)C labeled ligands: the large hyperfine couplings indicate strong Fe-C π-bonding with the acetylenic group. These results illustrate a remarkable diversity in binding behavior for HMBPP-analog inhibitors, opening up new routes to inhibitor design of interest in the context of anti-bacterial and anti-malarial drug discovery, as well as "cubane-type" metallo-biochemistry, in general.
机译:IspG和IspH是大多数细菌以及疟疾寄生虫中参与类异戊二烯生物合成的蛋白质,并且是重要的药物靶标。它们包含古巴型4Fe-4S团簇,参与异常的2H〜+ / 2e〜还原。在这里,我们报告的氨基和巯基-HMBPP(HMBPP = £ -1-羟基-2-甲基-丁-2-烯基4-二磷酸)IspH底物类似物抑制剂的结合的电子顺磁共振波谱研究的结果两种蛋白质,以及HMBPP和乙炔二磷酸抑制剂与IspG的结合。结果表明,氨基-HMBPP通过Fe-Cπ键与降低的IspH结合,烯烃碳与4Fe-4S簇中唯一的4〜(th)Fe相互作用,这与直接用Fe-N连接观察到的氧化的蛋白质。当氨基-HMBPP结合还原的IspG时,没有观察到这种π复合物。在连二亚硫酸盐和硫代-HMBPP的存在下,用IspH未观察到EPR信号,这表明4Fe-4S团簇并未还原,这与吸收光谱中存在420 nm特征(氧化团簇的特征)一致。但是,对于IspG,在连二亚硫酸盐和硫代HMBPP存在下的EPR光谱与HMBPP所见非常相似。 HMBPP与IspG的结合是使用超精细亚级相关光谱技术通过〜(17)O和〜(13)C标记的样品进行研究的:结果排除了直接的Fe-0键并指示π键。最后,通过使用具有〜(13)C标记的配体的电子核双共振光谱研究了有效的乙炔二磷酸抑制剂与IspG的结合:大的超精细偶合表明与炔基的强Fe-Cπ键。这些结果说明了HMBPP类似物抑制剂在结合行为上的显着差异,在抗菌和抗疟疾药物发现以及“古巴型”金属生物化学的背景下,开辟了新的途径设计感兴趣的抑制剂。一般来说。

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