Geudens Niels, Martins José C
NMR and Structure Analysis Unit, Department of Organic and Macromolecular Chemistry, Ghent University, Ghent, Belgium.
Front Microbiol. 2018 Aug 14;9:1867. doi: 10.3389/fmicb.2018.01867. eCollection 2018.
Cyclic lipodepsipeptides produced by 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.
由 spp. 产生的环状脂肽(Ps-CLPs)是一类生物表面活性剂,它们构成了一类多样的具有广泛应用潜力的多功能生物活性天然化合物。虽然其化学结构多样,但遵循共同的结构蓝图,可定义为14个不同的组,每组有多个结构同源的成员。除了抗菌和抗真菌特性外,已报道的Ps-CLPs的活性谱还包括它们对细菌运动性、生物膜形成的影响,在植物中诱导的防御反应、它们的杀虫活性以及对人类癌细胞系的抗增殖作用。为了进一步验证它们作为潜在生物活性物质的地位,我们评估了从文献中获取的关于51种Ps-CLPs的775项生物学测试结果。由此得出一个碎片化的观点。总体而言,Ps-CLPs呈现出广泛的活性谱。然而,关于单个Ps-CLPs的报道在受挑战的生物体范围或所探索的活性方面往往更为有限。因此,我们的分析表明,目前可用的数据过于稀疏,无法将生物学功能与特定的Ps-CLPs组相关联。因此,文献中关于Ps-CLPs生物活性的某些概括应予以细化。尽管如此,对两种研究最广泛的Ps-CLPs的数据确实表明它们可以对各种生物靶点显示活性。随着新型Ps-CLPs的发现加速,讨论了当前在完整和维持生物活性有用概述方面面临的挑战。