Kurmayer Rainer, Morón Asensio Rubén
Research Department for Limnology, University of Innsbruck, Mondseestrasse 9, 5310 Mondsee, Austria.
Toxins (Basel). 2024 Dec 5;16(12):526. doi: 10.3390/toxins16120526.
Recently, the use of click chemistry for localization of chemically modified cyanopeptides has been introduced, i.e., taking advantage of promiscuous adenylation (A) domains in non-ribosomal peptide synthesis (NRPS), allowing for the incorporation of clickable non-natural amino acids (non-AAs) into their peptide products. In this study, time-lapse experiments have been performed using pulsed feeding of three different non-AAs in order to observe the synthesis or decline of azide- or alkyne-modified microcystins (MCs) or anabaenopeptins (APs). The cyanobacteria and were grown under maximum growth rate conditions (r = 0.35-0.6 and 0.2-0.4 (day), respectively) in the presence of non-AAs for 12-168 h. The decline of the azide- or alkyne-modified MC or AP was observed via pulse-feeding. In general, the increase in clickable MC/AP in peptide content reached a plateau after 24-48 h and was related to growth rate, i.e., faster-growing cells also produced more clickable MC/AP. Overall, the proportion of clickable MC/AP in the intracellular fraction correlated with the proportion observed in the dissolved fraction. Conversely, the overall linear decrease in clickable MC/AP points to a rather constant decline via dilution by growth instead of a regulated or induced release in the course of the synthesis process.
最近,已引入利用点击化学对化学修饰的蓝藻肽进行定位,即利用非核糖体肽合成(NRPS)中混杂的腺苷化(A)结构域,将可点击的非天然氨基酸(非AA)掺入其肽产物中。在本研究中,通过脉冲添加三种不同的非AA进行了延时实验,以观察叠氮化物或炔烃修饰的微囊藻毒素(MCs)或鱼腥藻肽(APs)的合成或减少情况。蓝藻在存在非AA的情况下,分别在最大生长速率条件下(r分别为0.35 - 0.6和0.2 - 0.4(天))培养12 - 168小时。通过脉冲添加观察叠氮化物或炔烃修饰的MC或AP的减少情况。一般来说,肽中可点击的MC/AP含量在24 - 48小时后达到平台期,且与生长速率相关,即生长较快的细胞也产生更多可点击的MC/AP。总体而言,细胞内部分中可点击的MC/AP比例与溶解部分中观察到的比例相关。相反,可点击的MC/AP的总体线性下降表明,其下降主要是通过生长稀释实现的,而非在合成过程中受到调控或诱导释放。