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Development of a High Throughput Screen for the Identification of Inhibitors of Peptidoglycan O- Acetyltransferases, New Potential Antibacterial Targets

机译:开发高通量筛网,用于鉴定肽聚糖O-乙酰转移酶的抑制剂,新的潜在抗菌靶标

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The O -acetylation of peptidoglycan occurs in many Gram-negative and most Gram-positive pathogens and this modification to the essential wall polymer controls the lytic activity of the autolysins, particularly the lytic transglycosylases, and inhibits that of the lysozymes of innate immunity systems. As such, the peptidoglycan O -acetyltransferases PatA/B and OatA are recognized as virulence factors. In this study, we present the high throughput screening of small compound libraries to identify the first known inhibitors of these enzymes. The fluorometric screening assay developed involved monitoring the respective O -acetyltransferases as esterases using 4-methylumbelliferylacetate as substrate. Pilot screens of 3921 compounds validated the usefulness of the HTS protocol. A number of potential inhibitors were identified amongst a total of 145,000 low molecular-weight compounds, some of which were common to both enzymes, while others were unique to each. After eliminating a number of false positives in secondary screens, dose response curves confirmed the apparent specificity of a benzothiazolyl-pyrazolo-pyridine as an inhibitor of Neisseria gonorrhoe ae PatB, and several coumarin-based compounds as inhibitors of both this PatB and OatA from Staphylococcus aureus . The benzothiazolyl-pyrazolo-pyridine was determined to be a non-competitive inhibitor of PatB with a K i of 126 μM. At 177 μg/mL and close to its solubility limit, this compound caused a 90% reduction in growth of N. gonorrhoeae , while growth of Escherichia coli , a bacterium that lacks PatB and, hence, does not produce O-acetylated peptidoglycan, was unaffected. These data provide preliminary proof of concept that peptidoglycan O -acetyltransferases would serve as useful antibacterial targets.
机译:肽聚糖的O-乙酰化发生在许多革兰氏阴性和大多数革兰氏阳性病原体中,并且对基本壁聚合物的这种改性控制了自由糖苷,特别是裂解的转基质溶胶酶的裂解活性,并抑制先天免疫系统的溶菌酶的溶菌活性。因此,肽聚糖O-乙酰转移酶PATA / B和OATA被认为是毒力因子。在该研究中,我们介绍了小化合物文库的高通量筛选,以鉴定这些酶的第一已知抑制剂。荧光筛选测定产生包括使用4-甲基晶片作为底物的酯酶监测各自的O-乙酰转移酶。 3921的试验屏幕验证了HTS议定书的有用性。在总共145,000个低分子量化合物中鉴定了许多潜在的抑制剂,其中一些酶是常见的,而其他一些则对每个酶进行常见。在消除二次屏幕中的许多假阳性后,剂量反应曲线证实了苯并噻唑基 - 吡唑-吡啶作为Neisseria Gonorrhoe AE PATB抑制剂的表观特异性,以及几种基于香豆素的化合物作为来自葡萄球菌的抑制剂和来自葡萄球菌的抑制剂金黄色葡萄球菌。将苯并噻唑基 - 吡唑 - 吡唑吡啶测定为具有126μm的K I的蛋白的非竞争性抑制剂。在177μg/ ml并接近其溶解度极限,该化合物引起了90%的生长降低了N.淋病的生长,而大肠杆菌的生长,缺乏凹凸的细菌,因此不会产生O-乙酰化肽聚糖。不受影响。这些数据提供了肽肽肽o-乙酰转移酶作为有用的抗菌靶标的概念证明。

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