Granafei Sara, Losito Ilario, Palmisano Francesco, Cataldi Tommaso R I
Dipartimento di Chimica, Università degli Studi di Bari Aldo Moro, Campus Universitario, Bari, Italy.
Centro di Ricerca Interdipartimentale SMART, Università degli Studi di Bari Aldo Moro, Campus Universitario, Bari, Italy.
Rapid Commun Mass Spectrom. 2017 Sep 30;31(18):1499-1509. doi: 10.1002/rcm.7928.
Sulfoquinovosylmonoglycerides (SQMG) and sulfoquinovosyldiglycerides (SQDG) in the lipid extracts of parsley (Petroselinum crispum) and spinach (Spinacia oleracea) leaves were investigated. The aim of this work was to assess and establish the chemical characterization of fatty acyl chains in sulfolipids (SQMG and SQDG) and their regiochemistry.
A key component of this approach is a combination of hydrolysis reactions catalyzed by Lecitase® Ultra, which is a sn -regioselective hydrolase enzyme, and reversed-phase liquid chromatography with electrospray ionization and sequential mass spectrometry (RPLC/ESI-MS) by collision-induced dissociation (CID)-MS (n = 2, 3).
The occurrence of SQMG bearing 16:0 or 18:3 acyl chains was established for the first time. A regiochemistry-dependent fragmentation pattern of SQMG was attained whereby the sulfoquinovosyl anion ([C H O S] at m/z 243.0) provides a diagnostic product ion. Regioselective enzymatic treatment also provided a posteriori confirmation of a widely accepted fragmentation rule for SQDG. The sulfoquinovosyl anion was found to play a role also in the fragmentation pattern of SQDG, whose regiochemical assignment could be ultimately confirmed by MS experiments.
The predominant sulfolipid in leaf extracts of raw parsley (Petroselinum crispum) and spinach (Spinacia oleracea) was identified as SQDG 18:3/16:0, along with SQMG 18:3/0:0 and SQMG 16:0/0:0. The present CID-MS-based method can be considered a successful approach to validate the regiochemical characterization of sulfolipids paving the way for their unambiguous characterization.
对欧芹(皱叶欧芹)和菠菜(菠菜)叶片脂质提取物中的磺基喹喔啉单甘油酯(SQMG)和磺基喹喔啉二甘油酯(SQDG)进行了研究。这项工作的目的是评估和确定硫脂(SQMG和SQDG)中脂肪酰链的化学特征及其区域化学。
该方法的一个关键组成部分是将Lecitase® Ultra催化的水解反应(Lecitase® Ultra是一种sn -区域选择性水解酶)与通过碰撞诱导解离(CID)-MS(n = 2, 3)的电喷雾电离和串联质谱(RPLC/ESI-MS)的反相液相色谱相结合。
首次确定了带有16:0或18:3酰基链的SQMG的存在。获得了SQMG的区域化学依赖性碎片化模式,其中磺基喹喔啉阴离子(m/z 243.0处的[C₆H₁₀O₉S])提供了一个诊断性产物离子。区域选择性酶处理还为SQDG广泛接受的碎片化规则提供了事后确认。发现磺基喹喔啉阴离子在SQDG的碎片化模式中也起作用,其区域化学归属最终可通过质谱实验得到证实。
生欧芹(皱叶欧芹)和菠菜(菠菜)叶片提取物中的主要硫脂被鉴定为SQDG 18:3/16:0,以及SQMG 18:3/0:0和SQMG 16:0/0:0。目前基于CID-MS的方法可被认为是验证硫脂区域化学特征的成功方法,为其明确表征铺平了道路。