Dipartimento di Chimica, Università degli Studi di Bari Aldo Moro, Bari, Italy.
J Mass Spectrom. 2012 Oct;47(10):1384-93. doi: 10.1002/jms.3078.
A novel pathway for cytosine to uracil conversion performed in a micellar environment, leading to the generation of uridine monophosphate (UMP), was evidenced during the alkylation reaction of cytidine monophosphate (CMP) by dodecyl epoxide. Liquid chromatography-electrospray ionization - ion trap - mass spectrometry was used to separate and identify the reaction products and to follow their formation over time. The detection of hydroxy-amino-dodecane, concurrently with free UMP, in the reaction mixture suggested that, among the various alkyl-derivatives formed, CMP alkylated on the amino group of cytosine could undergo tautomerization to an imine and hydrolytic deamination, generating UMP. Interestingly, no evidence for this peculiar conversion pathway was obtained when guanosine monophosphate (GMP), the complementary ribonucleotide of CMP, was also present in the reaction mixture, due to the fact that NH(2)-alkylated CMP was not formed in this case. The last finding emphasized the role played by CMP-GMP molecular interactions, mediated by a micellar environment, in hindering the alkylation reaction at the level of the cytosine amino group.
一种在胶束环境中进行的胞嘧啶到尿嘧啶的转换新途径,导致尿苷一磷酸(UMP)的生成,在胞苷单磷酸(CMP)被十二烷基环氧化物烷基化反应中得到证实。液相色谱-电喷雾电离-离子阱-质谱用于分离和鉴定反应产物,并随时间跟踪其形成。在反应混合物中同时检测到羟氨基-十二烷和游离 UMP 表明,在所形成的各种烷基衍生物中,CMP 可以在胞嘧啶的氨基上发生烷基化,然后发生互变异构和水解脱氨,生成 UMP。有趣的是,当反应混合物中也存在 CMP 的互补核苷酸鸟苷单磷酸(GMP)时,没有发现这种特殊的转换途径的证据,因为在这种情况下没有形成 NH(2)-烷基化的 CMP。最后一个发现强调了 CMP-GMP 分子相互作用在胶束环境介导下阻止了胞嘧啶氨基的烷基化反应的作用。