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异戊烯基黄素依赖性阿魏酸脱羧酶作用机制中瞬态中间体的动力学分析

Kinetic Analysis of Transient Intermediates in the Mechanism of Prenyl-Flavin-Dependent Ferulic Acid Decarboxylase.

作者信息

Kaneshiro April K, Koebke Karl J, Zhao Chunyi, Ferguson Kyle L, Ballou David P, Palfey Bruce A, Ruotolo Brandon T, Marsh E Neil G

出版信息

Biochemistry. 2021 Jan 19;60(2):125-134. doi: 10.1021/acs.biochem.0c00856. Epub 2020 Dec 19.

Abstract

Ferulic acid decarboxylase catalyzes the decarboxylation of various substituted phenylacrylic acids to their corresponding styrene derivatives and CO using the recently discovered cofactor prenylated FMN (prFMN). The mechanism involves an unusual 1,3-dipolar cycloaddition reaction between prFMN and the substrate to generate a cycloadduct capable of undergoing decarboxylation. Using native mass spectrometry, we show the enzyme forms a stable prFMN-styrene cycloadduct that accumulates on the enzyme during turnover. Pre-steady state kinetic analysis of the reaction using ultraviolet-visible stopped-flow spectroscopy reveals a complex pattern of kinetic behavior, best described by a half-of-sites model involving negative cooperativity between the two subunits of the dimeric enzyme. For the reactive site, the cycloadduct of prFMN with phenylacylic acid is formed with a of 131 s. This intermediate converts to the prFMN-styrene cycloadduct with a of 75 s. Cycloelimination of the prFMN-styrene cycloadduct to generate styrene and free enzyme appears to determine for the overall reaction, which is 11.3 s.

摘要

阿魏酸脱羧酶利用最近发现的辅因子异戊烯基化黄素单核苷酸(prFMN)催化各种取代苯丙烯酸脱羧生成相应的苯乙烯衍生物和二氧化碳。该机制涉及prFMN与底物之间不寻常的1,3 - 偶极环加成反应,以生成能够进行脱羧反应的环加成物。使用基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS),我们发现该酶形成了一种稳定的prFMN-苯乙烯环加成物,在反应过程中会在酶上积累。使用紫外可见停流光谱对反应进行稳态前动力学分析,揭示了一种复杂的动力学行为模式,最适合用涉及二聚体酶两个亚基之间负协同性的半位点模型来描述。对于活性位点,prFMN与苯丙烯酸的环加成物形成的速率常数为131 s⁻¹。该中间体以75 s⁻¹的速率常数转化为prFMN-苯乙烯环加成物。prFMN-苯乙烯环加成物的环消除反应生成苯乙烯和游离酶,这似乎决定了整个反应的速率常数,为11.3 s⁻¹。

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