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Structural Studies of Pterin-Based Inhibitors of Dihydropteroate Synthase

机译:基于蝶呤的二氢蝶呤合酶抑制剂的结构研究

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摘要

Dihydropteroate synthase (DHPS) is a key enzyme in bacterial folate synthesis and the target of the sulfonamide class of antibacterials. Resistance and toxicities associated with sulfonamides have led to a decrease in their clinical use. Compounds that bind to the pterin binding site of DHPS, as opposed to the p-amino benzoic acid (pABA) binding site targeted by the sulfonamide agents, are anticipated to bypass sulfonamide resistance. To identify such inhibitors and map the pterin binding pocket, we have performed virtual screening, synthetic, and structural studies using Bacillus anthracis DHPS. Several compounds with inhibitory activity have been identified, and crystal structures have been determined that show how the compounds engage the pterin site. The structural studies identify the key binding elements and have been used to generate a structure-activity based pharmacophore map that will facilitate the development of the next generation of DHPS inhibitors which specifically target the pterin site.
机译:二氢蝶呤合酶(DHPS)是细菌叶酸合成中的关键酶,也是磺胺类抗菌药物的目标。与磺胺类药物有关的耐药性和毒性导致其临床用途减少。与磺酰胺试剂靶向的对氨基苯甲酸(pABA)结合位点相反,与DHPS的蝶呤结合位点结合的化合物有望绕过对磺酰胺的耐药性。为了鉴定此类抑制剂并绘制蝶呤结合口袋,我们使用炭疽芽孢杆菌DHPS进行了虚拟筛选,合成和结构研究。已经鉴定了几种具有抑制活性的化合物,并且已经确定了晶体结构,其显示了这些化合物如何与蝶呤位点结合。结构研究确定了关键的结合元件,并已用于生成基于结构活性的药效团图,这将有助于开发专门针对蝶呤位点的下一代DHPS抑制剂。

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