Kazan Institute of Biochemistry and Biophysics, Russian Academy of Sciences, P.O. Box 30, Kazan 420111, Russia.
Firmenich S.A., Corporate R&D, Route des Jeunes 1, CH-1211 Geneva, Switzerland.
Biochim Biophys Acta Mol Cell Biol Lipids. 2018 Oct;1863(10):1316-1322. doi: 10.1016/j.bbalip.2018.08.011. Epub 2018 Aug 20.
Hydroperoxide lyases (HPLs) of the CYP74 family (P450 superfamily) are widely distributed enzymes in higher plants and are responsible for the stress-initiated accumulation of short-chain aldehydes. Fatty acid hydroperoxides serve as substrates for HPLs; however, details of the HPL-promoted conversion are still incompletely understood. In the present work, we report first time the micropreparative isolation and the NMR structural studies of fatty acid hemiacetal (TMS/TMS), the short-lived HPL product. With this aim, linoleic acid 9(S)‑hydroperoxide (9(S)‑HPOD) was incubated with recombinant melon hydroperoxide lyase (CmHPL, CYP74C2) in a biphasic system of water/hexane for 60 s at 0 °C, pH 4.0. The hexane layer was immediately decanted and vortexed with a trimethylsilylating mixture. Analysis by GC-MS revealed a major product, i.e. the bis-TMS derivative of a hemiacetal which was conclusively identified as 9‑hydroxy‑9‑[(1'E,3'Z)‑nonadienyloxy]‑nonanoic acid by NMR-spectroscopy. Further support for the hemiacetal structure was provided by detailed NMR-spectroscopic analysis of the bis-TMS hemiacetal generated from [C]9(S)‑HPOD in the presence of CmHPL. The results obtained provide incontrovertible evidence that the true products of the HPL group of enzymes are hemiacetals, and that the short-chain aldehydes are produced by their rapid secondary chain breakdown. Therefore, we suggest replacing the name "hydroperoxide lyase", which does not reflect the factual isomerase (intramolecular oxidoreductase) activity, with "hemiacetal synthase" (HAS).
CYP74 家族的过氧化物酶体(P450 超家族)是广泛分布于高等植物中的酶,负责应激诱导的短链醛的积累。脂肪酸过氧化物是 HPL 的底物;然而,HPL 促进的转化的细节仍不完全清楚。在本工作中,我们首次报道了脂肪酸半缩醛(TMS/TMS)的微量分离和 NMR 结构研究,脂肪酸半缩醛是短寿命的 HPL 产物。为此,亚油酸 9(S)-过氧化物(9(S)-HPOD)与重组甜瓜过氧化物酶体(CmHPL,CYP74C2)在水/己烷的两相体系中于 0°C、pH 4.0 下孵育 60s。立即将己烷层倒出并与三甲基硅烷化混合物涡旋。GC-MS 分析显示主要产物为半缩醛的双 TMS 衍生物,通过 NMR 光谱鉴定为 9-羟基-9-[(1'E,3'Z)-壬二烯酰氧基]-壬酸。通过在 CmHPL 存在下从 [C]9(S)-HPOD 生成的双 TMS 半缩醛的详细 NMR 光谱分析进一步支持了半缩醛结构。所得结果提供了无可争议的证据,即 HPL 酶组的真正产物是半缩醛,而短链醛是通过其快速的次级链断裂产生的。因此,我们建议用“半缩醛合酶”(HAS)代替“过氧化物酶体”这个名称,因为这个名称不能反映实际上的异构酶(分子内氧化还原酶)活性。