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基质氘代对产生氧合酶 A (PpoA) 的双功能血红素酶 psi 因子反应的影响。

Influence of substrate dideuteration on the reaction of the bifunctional heme enzyme psi factor producing oxygenase A (PpoA).

机构信息

Georg-August-Universität Göttingen, Institut für Organische und Biomolekulare Chemie, Tammannstrasse 2, 37077 Göttingen, Germany.

出版信息

Chembiochem. 2011 Mar 21;12(5):728-37. doi: 10.1002/cbic.201000669. Epub 2011 Mar 1.

Abstract

PpoA is a bifunctional enzyme that catalyzes the dioxygenation of unsaturated C18 fatty acids. The products of this reaction are termed psi factors and have been shown to play a crucial role in conferring a balance between sexual and asexual spore development as well as production of secondary metabolites in the fungus Aspergillus nidulans. Studies on the reaction mechanism revealed that PpoA uses two different heme domains to catalyze two subsequent reactions. Initially, the fatty acid substrate is dioxygenated at C8, yielding an 8-hydroperoxy fatty acid at the N-terminal domain. This reaction is catalyzed by a peroxidase/dioxygenase-type domain that exhibits many similarities to prostaglandin H2 synthases and involves a stereospecific homolytic hydrogen abstraction from C8 of the substrate. The C terminus harbors a heme thiolate P450 domain in which rearrangement of the 8-hydroperoxide to the final product, a 5,8-dihydroxy fatty acid, takes place. To obtain further information about the intrinsic kinetics and reaction mechanism of PpoA, we synthesized C5-dideutero- and C8-dideutero-oleic acid by a novel protocol that offers a straightforward synthesis without employing the toxic additive hexamethylphosphoramide (HMPA) during CC coupling reactions or mercury salts upon thioketal deprotection. These deuterated fatty acids were then employed for kinetic analysis under multiple-turnover conditions. The results indicate that the hydrogen abstraction at C8 is the rate-determining step of the overall reaction because we observed a KIE (V(H) /V(D) ) of ∼33 at substrate saturation that suggests extensive nuclear tunneling contributions for hydrogen transfer. Deuteration of the substrate at C5, however, had little effect on V(H) /V(D) but resulted in a different product pattern presumably due to an altered lifetime and partitioning of a reaction intermediate.

摘要

PpoA 是一种双功能酶,可催化不饱和 C18 脂肪酸的双加氧反应。该反应的产物称为 psi 因子,已被证明在赋予青霉 Aspergillus nidulans 中性孢子和无性孢子发育以及次生代谢产物产生之间的平衡方面发挥着关键作用。对反应机制的研究表明,PpoA 使用两个不同的血红素结构域催化两个后续反应。最初,脂肪酸底物在 C8 处双加氧,在 N 端结构域生成 8-羟过氧脂肪酸。该反应由过氧化物酶/双氧酶型结构域催化,该结构域与前列腺素 H2 合酶有许多相似之处,涉及底物 C8 处的立体特异性均裂氢提取。C 末端含有血红素硫醇 P450 结构域,其中 8-羟过氧化物重排为最终产物,即 5,8-二羟基脂肪酸。为了获得有关 PpoA 的固有动力学和反应机制的进一步信息,我们通过一种新的方案合成了 C5-二氘代和 C8-二氘代油酸,该方案提供了一种无需在 C-C 偶联反应中使用有毒添加剂六甲基磷酰胺(HMPA)或硫代缩酮脱保护时使用汞盐的简单合成方法。然后在多次转化条件下使用这些氘代脂肪酸进行动力学分析。结果表明,C8 处的氢提取是整个反应的速率决定步骤,因为我们在底物饱和时观察到 KIE(V(H)/V(D))约为 33,表明氢转移存在广泛的核隧道贡献。然而,底物在 C5 处的氘代对 V(H)/V(D)几乎没有影响,但导致不同的产物模式,可能是由于反应中间体的寿命和分配发生改变。

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