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Cyclic Lipodepsipeptides From Pseudomonas spp. – Biological Swiss-Army Knives

机译:假单胞菌属的环脂肽肽。 –生物瑞士军刀

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摘要

Cyclic lipodepsipeptides produced by Pseudomonas spp. (Ps-CLPs) are biosurfactants that constitute a diverse class of versatile bioactive natural compounds with promising application potential. While chemically diverse, they obey a common structural blue-print, allowing the definition of 14 distinct groups with multiple structurally homologous members. In addition to antibacterial and antifungal properties the reported activity profile of Ps-CLPs includes their effect on bacterial motility, biofilm formation, induced defense responses in plants, their insecticidal activity and anti-proliferation effects on human cancer cell-lines. To further validate their status of potential bioactive substances, we assessed the results of 775 biological tests on 51 Ps-CLPs available from literature. From this, a fragmented view emerges. Taken as a group, Ps-CLPs present a broad activity profile. However, reports on individual Ps-CLPs are often much more limited in the scope of organisms that are challenged or activities that are explored. As a result, our analysis shows that the available data is currently too sparse to allow biological function to be correlated to a particular group of Ps-CLPs. Consequently, certain generalizations that appear in literature with respect to the biological activities of Ps-CLPs should be nuanced. This notwithstanding, the data for the two most extensively studied Ps-CLPs does indicate they can display activities against various biological targets. As the discovery of novel Ps-CLPs accelerates, current challenges to complete and maintain a useful overview of biological activity are discussed.
机译:假单胞菌属(Pseudomonas spp)产生的环状脂肽肽。 (Ps-CLP)是生物表面活性剂,可构成一类具有广泛应用前景的多功能生物活性天然化合物。尽管化学上各不相同,但它们遵循共同的结构蓝图,可以定义14个具有多个结构同源成员的不同基团。除了抗菌和抗真菌特性外,据报道,Ps-CLPs的活性谱还包括它们对细菌运动性,生物膜形成,植物诱导的防御反应,其杀虫活性和对人类癌细胞系的抗增殖作用。为了进一步验证其潜在生物活性物质的状态,我们评估了从文献中获得的针对51种Ps-CLP的775次生物学测试的结果。由此,出现了零散的观点。作为一个整体,Ps-CLP具有广泛的活性。但是,关于单个Ps-CLP的报道通常在受挑战的生物或所探索的活动范围内受到更大的限制。结果,我们的分析表明,可用数据目前太稀疏,无法将生物学功能与特定的一组Ps-CLP相关。因此,应该细化文献中关于Ps-CLPs生物学活性的一些概括。尽管如此,两个研究最广泛的Ps-CLP的数据确实表明它们可以显示针对各种生物学靶标的活性。随着新型Ps-CLPs的发现加速,讨论了完成和维持生物学活性的有用概述的当前挑战。

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