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Novel oxylipins formed from docosahexaenoic acid by potato lipoxygenase-10(S)-hydroxydocosahexaenoic acid and 10,20-dihydroxydocosahexaenoic acid

机译:马铃薯脂氧合酶-10(S)-羟基二十二碳六烯酸和10,20-二羟基二十二碳六烯酸由二十二碳六烯酸形成的新型脂蛋白

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Potato tuber lipoxygenase (ptLOX) has been shown to catalyze the aerobic formation of at least four major oxygenated derivatives of DHA. Two of the products-7,1 7(S)- and 10,11 7(S)-dihydro(pero)xy-DHA [7,17- and 10,17-diH(P)DHA]were formed from soybean 15-LOX-derived 17(S)-hydro(pero)xy-DHA [17(S)-H(P)DHA], whereas two novel oxylipin compounds-10(S)-hydro(pero)xy-DHA and 10,20-dihydro(pero)xy-DHA [10(S)-H(P)DHA and 10,20-diH(P)DHA, respectively]-were the major direct products of DHA oxidation by ptLOX. The reactions proceeded relatively slowly but could be stimulated by catalytic amounts of SDS. Micromolar concentrations of 10(S)-HPDHA effectively abolished the kinetic lag period of ptLOX activation. Enzymatic activity with DHA or I 7(S)-HPDHA as substrate was about 8% of that with linoleic acid-a standard natural ptLOX substrate-whereas 1 7(S)-HDHA was converted at a rate of 1 %. The enzyme was relatively unstable and quickly inactivated during the reaction with DHA on with I 7(S)-HPDHA (first-order kinetic constant of inactivation k(in) = 1.5 +/- 0.3 min(-1)), but not with 17(S)-HDHA. Both 7,17- and 10,20-diH(P)DHA were clearly products of double oxygenation catalyzed by soybean 15-LOX and/or ptLOX. Our observation that ptLOX could convert 17-HDHA to 10,17-diH(P)DHA indicates that this dihydroxylated derivative of DHA also can be formed via a double lipoxygenation mechanism.
机译:马铃薯块茎脂加氧酶(ptLOX)已显示出可催化DHA的至少四种主要氧化衍生物的有氧形成。大豆15形成了7,1 7(S)-和10,11 7(S)-dihydro(pero)xy-DHA [7,17-和10,17-diH(P)DHA]中的两种产物-LOX衍生的17(S)-hydro(pero)xy-DHA [17(S)-H(P)DHA],而两种新颖的脂族化合物10(S)-hydro(pero)xy-DHA和10, 20-dihydro(pero)xy-DHA [分别是10(S)-H(P)DHA和10,20-diH(P)DHA]-是ptLOX氧化DHA的主要直接产物。反应进行得相对缓慢,但是可以被催化量的SDS刺激。微摩尔浓度的10(S)-HPDHA有效地消除了ptLOX激活的动力学滞后期。以DHA或I 7(S)-HPDHA为底物的酶促活性约为亚油酸(一种标准的天然ptLOX底物)的酶促活性,而1 7(S)-HDHA的酶促转化率为1%。该酶相对不稳定,在DHA与I 7(S)-HPDHA的反应过程中迅速失活(失活的一级动力学常数k(in)= 1.5 +/- 0.3 min(-1)),但没有17(S)-HDHA。显然,7,17-和10,20-diH(P)DHA都是大豆15-LOX和/或ptLOX催化的双重氧化产物。我们对ptLOX可以将17-HDHA转换为10,17-diH(P)DHA的观察表明,DHA的这种二羟基化衍生物也可以通过双重脂氧化机理形成。

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