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首页> 外文期刊>The Biochemical Journal >Production in vitro by the cytochrome P450 CYP94A1 of major C18 cutin monomers and potential messengers in plant-pathogen interactions: enantioselectivity studies.
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Production in vitro by the cytochrome P450 CYP94A1 of major C18 cutin monomers and potential messengers in plant-pathogen interactions: enantioselectivity studies.

机译:细胞色素P450 CYP94A1的主要C18角质素单体和植物与病原体相互作用中的潜在信使的体外生产:对映选择性研究。

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The major C(18) cutin monomers are 18-hydroxy-9,10-epoxystearic and 9,10,18-trihydroxystearic acids. These compounds are also known messengers in plant-pathogen interactions. We have previously shown that their common precursor 9,10-epoxystearic acid was formed by the epoxidation of oleic acid in Vicia sativa microsomes (Pinot, Salaun, Bosch, Lesot, Mioskowski and Durst (1992) Biochem. Biophys. Res. Commun. 184, 183-193). Here we determine the chirality of the epoxide produced as (9R,10S) and (9S,10R) in the ratio 90:10 respectively. We further show that microsomes from yeast expressing the cytochrome P450 CYP94A1 are capable of hydroxylating the methyl terminus of 9,10-epoxystearic and 9,10-dihydroxystearic acids in the presence of NADPH to form the corresponding 18-hydroxy derivatives. The reactions were not catalysed by microsomes from yeast transformed with a void plasmid or in absence of NADPH. After incubation of a synthetic racemic mixture of 9,10-epoxystearic acid with microsomes of yeast expressing CYP94A1, the chirality of the residual epoxide was shifted to 66:34 in favour of the (9S,10R) enantiomer. Both enantiomers were incubated separately and V(max)/K(m) values of 16 and 3.42 ml/min per nmol of P450 for (9R, 10S) and (9S,10R) respectively were determined, demonstrating that CYP94A1 is enantioselective for the (9R,10S) enantiomer, which is preferentially formed in V. sativa microsomes. Compared with the epoxide, the diol 9,10-dihydroxystearic acid was a much poorer substrate for the omega-hydroxylase, with a measured V(max)/K(m) of 0.33 ml/min per nmol of P450. Our results indicate that the activity of CYP94A1 is strongly influenced by the stereochemistry of the 9, 10-epoxide and the nature of substituents on carbons 9 and 10, with V(max)/K(m) values for epoxideoleic acid>diol.
机译:主要的C(18)角质单体是18-羟基-9,10-环氧硬脂酸和9,10,18-三羟基硬脂酸。这些化合物也是植物-病原体相互作用的已知信使。先前我们已经表明,它们共同的前体9,10-环氧硬脂酸是由蚕豆微粒体中油酸的环氧化形成的(Pinot,Salaun,Bosch,Lesot,Mioskowski和Durst(1992)Biochem。Biophys。Res.Commun.184 ,183-193)。在这里,我们确定生成的环氧化物的手性分别为(9R,10S)和(9S,10R),比例为90:10。我们进一步表明,来自表达细胞色素P450 CYP94A1的酵母的微粒体能够在NADPH存在下羟基化9,10-环氧硬脂酸和9,10-二羟基硬脂酸的甲基末端,形成相应的18-羟基衍生物。在用空质粒转化的酵母中或在没有NADPH的情况下,微粒体无法催化反应。将9,10-环氧硬脂酸的合成外消旋混合物与表达CYP94A1的酵母微粒体温育后,残留的环氧化物的手性变为(9S,10R)对映异构体为66:34。将两种对映体分别孵育,分别测定(9R,10S)和(9S,10R)的P450的每纳摩尔P450的V(max)/ K(m)值为16和3.42 ml / min,表明CYP94A1对P450的对映选择性(9R,10S)对映异构体,其优先在豌豆微粒体中形成。与环氧化合物相比,二醇9,10-二羟基硬脂酸是ω-羟化酶的底物要差得多,测得的V(max)/ K(m)为每纳摩尔P450 0.33 ml / min。我们的结果表明CYP94A1的活性受9、10-环氧化物的立体化学以及碳9和10上取代基的性质的强烈影响,其中环氧化物油酸的V(max)/ K(m)值二醇。

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