首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >High-resolution structures of Thermus thermophilus enoyl-acyl carrier protein reductase in the apo form in complex with NAD+ and in complex with NAD+ and triclosan
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High-resolution structures of Thermus thermophilus enoyl-acyl carrier protein reductase in the apo form in complex with NAD+ and in complex with NAD+ and triclosan

机译:与NAD +结合以及与NAD +和三氯生复合的载脂蛋白嗜热栖热菌烯酰基-酰基载体蛋白还原酶的高分辨率结构

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摘要

Enoyl-acyl carrier protein reductase (ENR; the product of the fabI gene) is an important enzyme that is involved in the type II fatty-acid-synthesis pathway of bacteria, plants, apicomplexan protozoa and mitochondria. Harmful pathogens such as Mycobacterium tuberculosis and Plasmodium falciparum use the type II fatty-acid-synthesis system, but not mammals or fungi, which contain a type I fatty-acid-synthesis pathway consisting of one or two multifunctional enzymes. For this reason, specific inhibitors of ENR are attractive antibiotic candidates. Triclosan, a broad-range antibacterial agent, binds to ENR, inhibiting fatty-acid synthesis. As humans do not have an ENR enzyme, they are not affected. Here, high-resolution structures of Thermus thermophilus (Tth) ENR in the apo form, bound to NAD+ and bound to NAD+ plus triclosan are reported. Differences from and similarities to other known ENR structures are reported; in general, the structures are very similar. The cofactor-binding site is also very similar to those of other ENRs and, as reported for other species, triclosan leads to greater ordering of the loop that covers the cofactor-binding site, which, together with the presence of triclosan itself, presumably provides tight binding of the dinucleotide, preventing cycling of the cofactor. Differences between the structures of Tth ENR and other ENRs are the presence of an additional β-sheet at the N-terminus and a larger number of salt bridges and side-chain hydrogen bonds. These features may be related to the high thermal stability of Tth ENR.
机译:烯丙基酰基载体蛋白还原酶(fabr基因的产物)是一种重要的酶,它参与细菌,植物,apicomplexan原生动物和线粒体的II型脂肪酸合成途径。有害的病原体(例如结核分枝杆菌和恶性疟原虫)使用II型脂肪酸合成系统,但不使用包含由一种或两种多功能酶组成的I型脂肪酸合成途径的哺乳动物或真菌。因此,ENR的特异性抑制剂是有吸引力的抗生素候选物。三氯生,一种广泛的抗菌剂,与ENR结合,抑制脂肪酸的合成。由于人类没有ENR酶,因此不会受到影响。在此,报告了载脂蛋白形式的嗜热栖热菌(Tth)ENR的高分辨率结构,该结构与NAD + 结合并与NAD + 结合三氯生。报告了与其他已知ENR结构的差异和相似之处;通常,结构非常相似。辅因子结合位点也与其他ENR的位点非常相似,据其他物种报道,三氯生导致覆盖辅因子结合位点的环的有序排列,这可能与三氯生本身的存在一起提供二核苷酸紧密结合,防止辅因子循环。 Tth ENR和其他ENR的结构之间的差异是,在N端存在一个额外的β-折叠以及大量的盐桥和侧链氢键。这些特征可能与Tth ENR的高热稳定性有关。

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