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Isotope Sensitive Branching and Kinetic Isotope Effects in the Reaction of Deuterated Arachidonic Acids with Human 12- and 15-Lipoxygenases

机译:氘代花生四烯酸与人12-和15-脂加氧酶反应中的同位素敏感分支和动力学同位素效应

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摘要

Lipoxygenases (LOs) catalyze lipid peroxidation and have been implicated in a number of human diseases connected to oxidative stress and inflammation. These enzymes have also attracted considerable attention due to large kinetic isotope effects (30−80) for the rate-limiting hydrogen abstraction step with linoleic acid (LA) as substrate. Herein, we report kinetic isotope effects (KIEs) in the reactions of three human LOs (platelet 12-hLO, reticulocyte 15-hLO-1, and epithelial 15-hLO-2) with arachidonic acid (AA). Surprisingly, the observed KIEs with AA were much smaller than the previously reported values with LA. Investigation into the origins for the smaller KIEs led to the discovery of isotope sensitive branching of the reaction pathways. Product distribution analysis demonstrated an inversion in the regioselectivity of 15-hLO-1, with hydrogen abstraction from C13 being the major pathway with unlabeled AA, but abstraction from C10 predominating when the methylene group at position 13 was deuterated. Smaller but clear changes in regioselectivity were also observed for 12-hLO and 15-hLO-2.
机译:脂加氧酶(LOs)催化脂质过氧化,并与许多与氧化应激和炎症有关的人类疾病有关。由于亚油酸(LA)为底物的限速氢提取步骤具有较大的动力学同位素效应(30-80),因此这些酶也引起了相当大的关注。在本文中,我们报道了三个人类LO(血小板12-hLO,网状细胞15-hLO-1和上皮15-hLO-2)与花生四烯酸(AA)的反应中的动力学同位素效应(KIEs)。令人惊讶的是,观察到的AA的KIE比以前报告的LA小得多。对较小KIEs起源的研究导致发现了反应途径的同位素敏感分支。产物分布分析表明,15-hLO-1的区域选择性反转,C13的氢提取是未标记AA的主要途径,但是当13位的亚甲基氘化时,C10的提取占主导。对于12-hLO和15-hLO-2,在区域选择性上也观察到较小但明显的变化。

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