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The identification of small molecule inhibitors of the plant inositol phosphorylceramide synthase which demonstrate herbicidal activity

机译:鉴定具有除草活性的植物肌醇磷酸神经酰胺合酶小分子抑制剂

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摘要

Resistance to 157 different herbicides and 88% of known sites of action has been observed, with many weeds resistant to two or more modes. Coupled with tighter environmental regulation, this demonstrates the need to identify new modes of action and novel herbicides. The plant sphingolipid biosynthetic enzyme, inositol phosphorylceramide synthase (IPCS), has been identified as a novel, putative herbicide target. The non-mammalian nature of this enzyme offers the potential of discovering plant specific inhibitory compounds with minimal impact on animals and humans, perhaps leading to the development of new non-toxic herbicides. The best characterised and most highly expressed isoform of the enzyme in the model-dicot Arabidopsis, AtIPCS2, was formatted into a yeast-based assay which was then utilized to screen a proprietary library of over 11,000 compounds provided by Bayer AG. Hits from this screen were validated in a secondary in vitro enzyme assay. These studies led to the identification of a potent inhibitor that showed selectivity for AtIPCS2 over the yeast orthologue, and activity against Arabidopsis seedlings. This work highlighted the use of a yeast-based screening assay to discover herbicidal compounds and the status of the plant IPCS as a novel herbicidal target.
机译:已观察到对157种不同除草剂的抗性和88%的已知作用位点,其中许多杂草对两种或多种模式具有抗性。再加上严格的环境法规,这表明需要确定新的作用方式和新型除草剂。植物鞘脂生物合成酶肌醇磷酸神经酰胺合成酶(IPCS)已被确定为新型的假定除草剂靶标。该酶的非哺乳动物特性为发现对动物和人类影响最小的植物特异性抑制化合物提供了潜力,这可能导致了新型无毒除草剂的开发。在模型专用拟南芥中,该酶的特征最充分,表达最充分的同工型AtIPCS2,被格式化为基于酵母的分析,然后用于筛选由拜耳公司提供的超过11,000种化合物的专有文库。来自该筛选的命中在次级体外酶测定中得到验证。这些研究导致了一种有效抑制剂的鉴定,该抑制剂显示出对AtIPCS2的选择性优于酵母直系同源物,并且具有针对拟南芥幼苗的活性。这项工作强调了使用基于酵母的筛选测定法来发现除草化合物以及植物IPCS作为新型除草目标的地位。

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