School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing 102488, China; Jin Yin-tan Hospital, Wuhan, Hubei, 430023, China.
School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing 102488, China.
J Pharm Biomed Anal. 2022 Feb 20;210:114555. doi: 10.1016/j.jpba.2021.114555. Epub 2021 Dec 28.
Profiling of new modified nucleosides from urine plays an important role in exploring biomarkers for cancer. However, limitations from the nature of the compound, bio-sample, instrumentation, and analytical method pose great challenges to achieving a comprehensive analysis of urinary nucleosides. Herein, a method of BH/MH-matching (BH, protonated nucleobase ion; MH, protonated precursor ion) was developed to discover novel modified nucleosides from human urine samples based on solid phase extraction targeted toward specific modified nucleosides combined with ultra-performance liquid chromatography coupled with dual-mass spectrometry platforms. Firstly, nucleosides containing 2,3-diol structure on ribose were effectively enriched by PBA (Phenylboronic Acid) cartridges. Secondly, a novel method, "BH/MH-matching" was established to achieve rapid screening of modified nucleosides. Based on the in-source fragmentation pattern of nucleosides, a series of putative modified nucleosides were rationally designed and characterized by matching the daughter ion BH and its parent ion MH in UPLC-MS spectra. Finally, as a complement to UPLC Q-TOF/MS, UPLC Q-Trap/MS was employed to validate the structure of putative compounds by MRM-IDA-EPI mode. Using the strategy, 12 new cis-diol-containing nucleoside analogs were successfully characterized, which were formed by modified base (mA, mA, mG, acC) and modified ribose containing C5'-O-formylation or C5'-O-methylation. Taken together, the results demonstrated our strategy could efficiently support the rapid discovery of cis-diol-containing nucleosides with modifications on either ribose or base moiety (or both), which exhibited a promising perspective in the future application of biochemical analysis and clinical diagnosis.
从尿液中对新型修饰核苷进行分析,在寻找癌症生物标志物方面发挥着重要作用。然而,由于化合物的本质、生物样本、仪器和分析方法的限制,对尿液核苷进行全面分析仍面临着巨大的挑战。在此,我们建立了一种 BH/MH-匹配(BH,质子化碱基离子;MH,质子化前体离子)方法,用于发现基于固相萃取(SPE)靶向特定修饰核苷的策略和超高效液相色谱-串联质谱(UHPLC-MS/MS)平台,从人尿液样本中发现新型修饰核苷。首先,利用 PBA(苯硼酸)柱对核糖上含有 2,3-二醇结构的核苷进行有效富集。其次,建立了一种新的方法“BH/MH-匹配”,用于快速筛选修饰核苷。根据核苷的源内碎裂模式,通过在 UPLC-MS 谱中匹配核苷的子离子 BH 和母离子 MH,合理设计并鉴定了一系列假定的修饰核苷。最后,作为 UPLC Q-TOF/MS 的补充,采用 UPLC Q-Trap/MS 通过 MRM-IDA-EPI 模式对假定化合物的结构进行验证。采用该策略,成功鉴定了 12 种新型 cis-二醇修饰核苷类似物,这些核苷类似物由修饰碱基(mA、mC、mG、acC)和修饰核糖组成,包含 C5'-O-甲酰化或 C5'-O-甲基化。总之,该结果表明我们的策略可以有效地支持对核糖或碱基部分(或两者)进行修饰的 cis-二醇修饰核苷的快速发现,这在未来的生化分析和临床诊断应用中具有广阔的前景。