Department of Pharmacology, University of Colorado Denver , Anschutz Medical Campus, 12801 E. 17th Ave., Aurora, Colorado 80045, United States.
Department of Biochemistry, Juntendo University School of Medicine , 2-1-1 Hongo, Bunkyo-ku, Tokyo 113-8421, Japan.
Anal Chem. 2017 Aug 15;89(16):8545-8553. doi: 10.1021/acs.analchem.7b02375. Epub 2017 Aug 2.
The positions of double bonds along the carbon chain of methylene interrupted polyunsaturated fatty acids are unique identifiers of specific fatty acids derived from biochemical reactions that occur in cells. It is possible to obtain direct structural information as to these double bond positions using tandem mass spectrometry after collisional activation of the carboxylate anions of an acetone adduct at each of the double bond positions formed by the photochemical Paternò-Büchi reaction with acetone. This reaction can be carried out by exposing a small portion of an inline fused silica capillary to UV photons from a mercury vapor lamp as the sample is infused into the electrospray ion source of a mass spectrometer. Collisional activation of [M - H] yields a series of reverse Paternò-Büchi reaction product ions that essentially are derived from cleavage of the original carbon-carbon double bonds that yield an isopropenyl carboxylate anion corresponding to each double bond location. Aldehydic reverse Paternò-Büchi product ions are much less abundant as the carbon chain length and number of double bonds increase. The use of a mixture of D/D-acetone facilitates identification of these double bonds indicating product ions as shown for arachidonic acid. If oxygen is present in the solvent stream undergoing UV photoactivation, ozone cleavage ions are also observed without prior collisional activation. This reaction was used to determine the double bond positions in a 20:3 fatty acid that accumulated in phospholipids of RAW 264.7 cells cultured for 3 days.
亚甲基中断的多不饱和脂肪酸的碳链上双键的位置是由细胞内生化反应产生的特定脂肪酸的独特标识符。通过在丙酮光化学 Paternò-Büchi 反应形成的每个双键位置的羧酸根阴离子进行碰撞激活后,使用串联质谱可以获得有关这些双键位置的直接结构信息。该反应可以通过将一小部分在线熔凝二氧化硅毛细管暴露于汞蒸气灯的紫外光子下来进行,同时将样品注入质谱的电喷雾离子源中。[M-H]的碰撞激活产生一系列反向 Paternò-Büchi 反应产物离子,这些离子基本上是从原始碳-碳双键的裂解中衍生而来的,生成与每个双键位置相对应的异丙烯基羧酸根阴离子。随着碳链长度和双键数量的增加,醛基反向 Paternò-Büchi 产物离子的丰度要低得多。使用 D/D-丙酮混合物有助于鉴定这些双键指示产物离子,如花生四烯酸所示。如果在经历 UV 光活化的溶剂流中存在氧气,则在没有预先进行碰撞激活的情况下也会观察到臭氧裂解离子。该反应用于确定 RAW 264.7 细胞培养 3 天后在磷脂中积累的 20:3 脂肪酸的双键位置。