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缩醛磷脂氧化会诱导激发态分子和亲电子脂质物种的产生。

Plasmalogen oxidation induces the generation of excited molecules and electrophilic lipid species.

作者信息

Faria Rodrigo L, Prado Fernanda M, Junqueira Helena C, Fabiano Karen C, Diniz Larissa R, Baptista Mauricio S, Di Mascio Paolo, Miyamoto Sayuri

机构信息

Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, Av. Prof. Lineu Prestes, 748, São Paulo, SP 05508-000, Brazil.

出版信息

PNAS Nexus. 2024 Jun 5;3(6):pgae216. doi: 10.1093/pnasnexus/pgae216. eCollection 2024 Jun.

Abstract

Plasmalogens are glycerophospholipids with a vinyl ether linkage at the sn-1 position of the glycerol backbone. Despite being suggested as antioxidants due to the high reactivity of their vinyl ether groups with reactive oxygen species, our study reveals the generation of subsequent reactive oxygen and electrophilic lipid species from oxidized plasmalogen intermediates. By conducting a comprehensive analysis of the oxidation products by liquid chromatography coupled to high-resolution mass spectrometry (LC-HRMS), we demonstrate that singlet molecular oxygen [O (Δ)] reacts with the vinyl ether bond, producing hydroperoxyacetal as a major primary product (97%) together with minor quantities of dioxetane (3%). Furthermore, we show that these primary oxidized intermediates are capable of further generating reactive species including excited triplet carbonyls and O (Δ) as well as electrophilic phospholipid and fatty aldehyde species as secondary reaction products. The generation of excited triplet carbonyls from dioxetane thermal decomposition was confirmed by light emission measurements in the visible region using dibromoanthracene as a triplet enhancer. Moreover, O (Δ) generation from dioxetane and hydroperoxyacetal was evidenced by detection of near-infrared light emission at 1,270 nm and chemical trapping experiments. Additionally, we have thoroughly characterized alpha-beta unsaturated phospholipid and fatty aldehydes by LC-HRMS analysis using two probes that specifically react with aldehydes and alpha-beta unsaturated carbonyls. Overall, our findings demonstrate the generation of excited molecules and electrophilic lipid species from oxidized plasmalogen species unveiling the potential prooxidant nature of plasmalogen-oxidized products.

摘要

缩醛磷脂是甘油骨架sn-1位带有乙烯基醚键的甘油磷脂。尽管由于其乙烯基醚基团与活性氧的高反应性而被认为是抗氧化剂,但我们的研究揭示了氧化缩醛磷脂中间体可产生后续的活性氧和亲电脂质物种。通过液相色谱与高分辨率质谱联用(LC-HRMS)对氧化产物进行全面分析,我们证明单线态分子氧[O(Δ)]与乙烯基醚键反应,产生氢过氧缩醛作为主要初级产物(97%)以及少量的二氧杂环丁烷(3%)。此外,我们表明这些初级氧化中间体能够进一步产生活性物种,包括激发三线态羰基和O(Δ),以及作为二级反应产物的亲电磷脂和脂肪醛物种。使用二溴蒽作为三线态增强剂,通过可见光区域的发光测量证实了二氧杂环丁烷热分解产生激发三线态羰基。此外,通过检测1270 nm处的近红外光发射和化学捕获实验证明了二氧杂环丁烷和氢过氧缩醛产生O(Δ)。此外,我们使用两种与醛和α-β不饱和羰基特异性反应的探针,通过LC-HRMS分析对α-β不饱和磷脂和脂肪醛进行了全面表征。总体而言,我们的研究结果表明氧化缩醛磷脂物种可产生活性分子和亲电脂质物种,揭示了缩醛磷脂氧化产物潜在的促氧化性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9338/11184980/12580ecf2447/pgae216f1.jpg

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