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超高效液相色谱-电喷雾电离质谱法检测和鉴定微囊藻毒素-RR与微胍之间的氰代谢物复合物

Detection and Characterization of Cyanometabolite Complexes between Microcystin-RR and a Microguanidine by UHPLC-ESI-MS.

作者信息

Premathilaka Sanduni H, Isailovic Dragan

机构信息

Department of Chemistry and Biochemistry, University of Toledo, Toledo, Ohio 43606, United States.

出版信息

J Am Soc Mass Spectrom. 2025 Sep 3;36(9):1950-1958. doi: 10.1021/jasms.5c00165. Epub 2025 Aug 25.

Abstract

Microcystins (MCs) are hepatotoxic cyclic peptides produced by cyanobacteria, with MC-RR being one of the most polar and commonly detected MC congeners in water collected during cyanobacterial harmful algal blooms (cHABs). Microguanidines (MGDs) are sulfated metabolites produced by sp. that have not been reported during Lake Erie cHABs. Herein, both MGD AL772 (also abbreviated here as MGD) and previously unreported complex ions containing MC-RR and MGD AL772 were discovered after UHPLC-ESI-HRMS, MS/MS, and MS/MS/MS analyses of the Lake Erie cHAB samples in positive and negative modes. Initially, a triply charged [(MC-RR)-MGD+3H] ion was detected at the same retention time as coeluting [MC-RR+2H] and [MGD-H] ions. Characterization of this complex ion by HCD, CID, ETD and thiol derivatization indicates that two [MC-RR+2H] ions are bonded to one [MGD-H], probably through interactions of positively charged guanidinium groups of arginine (R) residues and negatively charged MGD's sulfate groups, to form the triply charged complex during ESI. Four other complexes, including [MC-RR-MGD] and its in-source fragment [(MC-RR-MGD)-SO], were also detected as positive and negative ions at the same time due to coelution of MC-RR and MGD. These findings not only underscore the importance of an efficient separation for quantification of cyanobacterial metabolites but also provide novel insights into their interactions during ESI, which enabled the present report on the complexes between MC-RR and a sulfated cyanobacterial metabolite, MGD AL772.

摘要

微囊藻毒素(MCs)是蓝藻产生的具有肝毒性的环状肽,在蓝藻有害藻华(cHABs)期间采集的水体中,MC-RR是极性最强且最常检测到的微囊藻毒素同系物之一。微胍(MGDs)是由 种产生的硫酸化代谢产物,在伊利湖蓝藻有害藻华期间尚未见报道。在此,通过对伊利湖蓝藻有害藻华样本进行超高效液相色谱-电喷雾电离-高分辨质谱(UHPLC-ESI-HRMS)、串联质谱(MS/MS)和串联三级质谱(MS/MS/MS)正、负离子模式分析,发现了MGD AL772(本文也简称为MGD)以及此前未报道的含有MC-RR和MGD AL772的复合离子。最初,在与共洗脱的[MC-RR + 2H]和[MGD - H]离子相同的保留时间处检测到一个三电荷[(MC-RR)-MGD + 3H]离子。通过高能碰撞解离(HCD)、碰撞诱导解离(CID)、电子转移解离(ETD)和硫醇衍生化对该复合离子进行表征表明,两个[MC-RR + 2H]离子与一个[MGD - H]键合,可能是通过精氨酸(R)残基带正电荷的胍基与带负电荷的MGD硫酸基团之间的相互作用,在电喷雾电离过程中形成三电荷复合物。由于MC-RR和MGD共洗脱,还同时检测到其他四种复合物,包括[MC-RR-MGD]及其源内碎片[(MC-RR-MGD)-SO],分别作为正离子和负离子。这些发现不仅强调了高效分离对蓝藻代谢产物定量的重要性,还为它们在电喷雾电离过程中的相互作用提供了新的见解,从而促成了本报告中关于MC-RR与一种硫酸化蓝藻代谢产物MGD AL772之间复合物的研究。

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