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首页> 外文期刊>Journal of Medicinal Chemistry >Inhibition of Staphyloxanthin Virulence Factor Biosynthesis in Staphylococcus aureus: In Vitro, in Vivo, and Crystallographic Results
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Inhibition of Staphyloxanthin Virulence Factor Biosynthesis in Staphylococcus aureus: In Vitro, in Vivo, and Crystallographic Results

机译:金黄色葡萄球菌中金黄色葡萄球菌毒素致病因子生物合成的抑制作用:体外,体内和晶体学结果

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The gold color of Staphylococcus aureus is derived from the carotenoid staphyloxanthin, a virulence factor for the organism. Here, we report the synthesis and activity of a broad variety of staphyloxanthin biosynthesis inhibitors that inhibit the first committed step in its biosynthesis, condensation of two farnesyl diphosphate (FPP) molecules to dehydrosqualene, catalyzed by the enzyme dehydrosqualene synthase (CrtM). The most active compounds are phosphonoacetamides that have low nanomolar K-i values for CrtM inhibition and are active in whole bacterial cells and in mice, where they inhibit S. aureus disease progression. We also report the X-ray crystallographic structure of the most active compound, N-3-(3-phenoxyphenyl)propylphosphonoacetamide (IC50 = 8 nM, in cells), bound to CrtM. The structure exhibits a complex network of hydrogen bonds between the polar headgroup and the protein, while the 3-phenoxyphenyl side chain is located in a hydrophobic pocket previously reported to bind farnesyl thiodiphosphate (FsPP), as well as biphenyl phosphonosulfonate inhibitors. Given the good enzymatic, whole cell, and in vivo pharmacologic activities, these results should help guide the further development of novel antivirulence factor-based therapies for S. aureus infections.
机译:金黄色葡萄球菌的金色来自类胡萝卜素葡萄黄素,它是生物体的致病因子。在这里,我们报告了多种葡萄黄素生物合成抑制剂的合成和活性,这些抑制剂抑制了其生物合成中的第一个重要步骤,即两个法呢基二磷酸(FPP)分子缩合为脱氢角鲨烯,这是由脱氢角鲨烯合酶(CrtM)催化的。最具活性的化合物是膦酰基乙酰胺,对CrtM的抑制具有较低的纳摩尔K-i值,并且在整个细菌细胞和小鼠中均具有活性,它们在其中抑制金黄色葡萄球菌疾病的进展。我们还报告了与CrtM结合的活性最高的化合物N-3-(3-苯氧基苯基)丙基膦酰基乙酰胺(IC50 = 8 nM,在细胞中)的X射线晶体结构。该结构在极性头基和蛋白质之间显示出复杂的氢键网络,而3-苯氧苯基侧链位于先前报道可与法呢基硫代二磷酸(FsPP)以及联苯膦酰基磺酸盐抑制剂结合的疏水口袋中。鉴于良好的酶促,全细胞和体内药理活性,这些结果应有助于指导针对金黄色葡萄球菌感染的新型基于抗毒力因子的疗法的进一步发展。

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