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Revealing the catalytic potential of an acyl-ACP desaturase: Tandem selective oxidation of saturated fatty acids

机译:揭示酰基ACP去饱和酶的催化潜能:饱和脂肪酸的串联选择性氧化

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摘要

It is estimated that plants contain thousands of fatty acid structures, many of which arise by the action of membrane-bound desaturases and desaturase-like enzymes. The details of “unusual” e.g., hydroxyl or conjugated, fatty acid formation remain elusive, because these enzymes await structural characterization. However, soluble plant acyl-ACP (acyl carrier protein) desaturases have been studied in far greater detail but typically only catalyze desaturation (dehydrogenation) reactions. We describe a mutant of the castor acyl-ACP desaturase (T117R/G188L/D280K) that converts stearoyl-ACP into the allylic alcohol trans-isomer (E)-10-18:1-9-OH via a cis isomer (Z)-9-18:1 intermediate. The use of regiospecifically deuterated substrates shows that the conversion of (Z)-9-18:1 substrate to (E)-10-18:1-9-OH product proceeds via hydrogen abstraction at C-11 and highly regioselective hydroxylation (>97%) at C-9. 18O-labeling studies show that the hydroxyl oxygen in the reaction product is exclusively derived from molecular oxygen. The mutant enzyme converts (E)-9-18:1-ACP into two major products, (Z)-10-18:1-9-OH and the conjugated linolenic acid isomer, (E)-9-(Z)-11-18:2. The observed product profiles can be rationalized by differences in substrate binding as dictated by the curvature of substrate channel at the active site. That three amino acid substitutions, remote from the diiron active site, expand the range of reaction outcomes to mimic some of those associated with the membrane-bound desaturase family underscores the latent potential of O2-dependent nonheme diiron enzymes to mediate a diversity of functionalization chemistry. In summary, this study contributes detailed mechanistic insights into factors that govern the highly selective production of unusual fatty acids.
机译:据估计,植物含有成千上万的脂肪酸结构,其中许多是通过膜结合的去饱和酶和类似去饱和酶的酶的作用而产生的。因为这些酶等待结构表征,所以“异常”例如羟基或缀合的脂肪酸形成的细节仍然难以捉摸。然而,已经对可溶性植物酰基-ACP(酰基载体蛋白)去饱和酶进行了更详细的研究,但通常仅催化去饱和(脱氢)反应。我们描述了一种蓖麻酰基-ACP去饱和酶(T117R / G188L / D280K)的突变体,它通过顺式异构体(Z)将硬脂酰-ACP转换成烯丙醇反式异构体(E)-10-18:1-9-OH -9-18:1中间体。区域特异性氘化底物的使用表明(Z)-9-18:1底物向(E)-10-18:1-9-OH产物的转化通过C-11处的氢提取和高度区域选择性羟基化(> 97%)。 18 O标记研究表明,反应产物中的羟基氧完全来源于分子氧。突变酶将(E)-9-18:1-ACP转换为两个主要产物(Z)-10-18:1-9-OH和共轭亚麻酸异构体(E)-9-(Z)- 11-18:2。观察到的产物概况可以通过底物结合的差异来合理化,所述差异取决于活性位点处底物通道的曲率。远离二价铁活性位点的三个氨基酸替代物扩大了反应结果的范围,以模仿一些与膜结合的去饱和酶家族相关的反应,这突显了O2依赖性非血红素二价铁酶潜在的介导多种功能化化学反应的潜力。 。总而言之,这项研究为控制异常脂肪酸高度选择性生产的因素提供了详细的机械学见解。

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