Department of Medicinal Chemistry, University of Florida, Gainesville, Florida 32610, United States.
Center for Natural Products, Drug Discovery and Development (CNPD3), University of Florida, Gainesville, Florida 32610, United States.
J Nat Prod. 2021 Mar 26;84(3):779-789. doi: 10.1021/acs.jnatprod.0c01003. Epub 2021 Jan 22.
New cyanobacteria-derived bifunctional analogues of doscadenamide A, a LasR-dependent quorum sensing (QS) activator in , characterized by dual acylation of the pyrrolinone core structure and the pendant side chain primary amine to form an imide/amide hybrid are reported. The identities of doscadenamides B-J were confirmed through total synthesis and a strategic focused library with different acylation and unsaturation patterns was created. Key molecular interactions for binding with LasR and a functional response through mutation studies coupled with molecular docking were identified. The structure-activity relationships (SARs) were probed in various Gram-negative bacteria, including and , indicating that the pyrrolinone-N acyl chain is critical for full agonist activity, while the other acyl chain is dispensable or can result in antagonist activity, depending on the bacterial system. Since homoserine lactone (HSL) quorum sensing activators have been shown to act in synergy with TRAIL to induce apoptosis in cancer cells, selected doscadenamides were tested in orthogonal eukaryotic screening systems. The most potent QS agonists, doscadenamides S10-S12, along with doscadenamides F and S4 with partial or complete saturation of the acyl side chains, exhibited the most pronounced synergistic effects with TRAIL in triple negative MDA-MB-231 breast cancer cells. The overall correlation of the SAR with respect to prokaryotic and eukaryotic targets may hint at coevolutionary processes and intriguing host-bacteria relationships. The doscadenamide scaffold represents a non-HSL template for combination therapy with TRAIL pathway stimulators.
新的来源于蓝藻的双功能双酰胺 A 类似物,一种依赖 LasR 的群体感应 (QS) 激活剂,其特征在于吡咯啉酮核心结构和侧链伯胺的双重酰化,形成亚胺/酰胺混合体。通过全合成和具有不同酰化和不饱和模式的战略重点文库,确定了 doscadenamides B-J 的身份。通过突变研究和分子对接结合功能响应,确定了与 LasR 结合的关键分子相互作用。在各种革兰氏阴性菌中,包括 和 ,研究了构效关系 (SARs),表明吡咯啉酮-N 酰链对于完全激动剂活性至关重要,而其他酰链是可有可无的,或者根据细菌系统,可能导致拮抗剂活性。由于已证明同型丝氨酸内酯 (HSL) 群体感应激活剂与 TRAIL 协同作用,以诱导癌细胞凋亡,因此在正交真核筛选系统中测试了选定的 doscadenamides。最有效的 QS 激动剂 doscadenamides S10-S12 以及酰侧链部分或完全饱和的 doscadenamides F 和 S4,在三阴性 MDA-MB-231 乳腺癌细胞中与 TRAIL 表现出最明显的协同作用。SAR 与原核和真核靶标的总体相关性可能暗示了共同进化过程和有趣的宿主-细菌关系。doscadenamide 支架代表了与 TRAIL 途径刺激剂联合治疗的非 HSL 模板。