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Detection and Time Course of Formation of Major Thiamin Diphosphate-Bound Covalent Intermediates Derived from a Chromophoric Substrate Analogue on Benzoylformate Decarboxylase

机译:苯甲酰甲酸酯脱羧酶的发色底物类似物衍生的主要硫胺二磷酸结合的共价中间体的形成及其检测过程

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摘要

The mechanism of the enzyme benzoylformate decarboxylase (BFDC), which carries out a typical thiamin diphosphate (ThDP)-dependent nonoxidative decarboxylation reaction, was studied with the chromophoric alternate substrate (E)-2-oxo-4(pyridin-3-yl)-3-butenoic acid (3-PKB). Addition of 3-PKB resulted in the appearance of two transient intermediates formed consecutively, the first one to be formed a predecarboxylation ThDP-bound intermediate with λmax at 477 nm, and the second one corresponding to the first postdecarboxylation intermediate the enamine with λmax at 437 nm. The time course of formation/depletion of the PKB–ThDP covalent complex and of the enamine showed that decarboxylation was slower than formation of the PKB–ThDP covalent adduct. When the product of decarboxylation 3-(pyridin-3-yl)acrylaldehyde (PAA) was added to BFDC, again an absorbance with λmax at 473 nm was formed, corresponding to the tetrahedral adduct of PAA with ThDP. Addition of well-formed crystals of BFDC to a solution of PAA resulted in a high resolution (1.34 Å) structure of the BFDC-bound adduct of ThDP with PAA confirming the tetrahedral nature at the C2α atom, rather than of the enamine, and supporting the assignment of the λmax at 473 nm to the PAA–ThDP adduct. The structure of the PAA–ThDP covalent complex is the first example of a product–ThDP adduct on BFDC. Similar studies with 3-PKB indicated that decarboxylation had taken place. Evidence was also obtained for the slow formation of the enamine intermediate when BFDC was incubated with benzaldehyde, the product of the decarboxylation reaction thus confirming its presence on the reaction pathway.
机译:用发色性备用底物(E)-2-oxo-4(吡啶-3-基)研究了苯甲酰甲酸酯脱羧酶(BFDC)的机理,该酶进行典型的硫胺二磷酸(ThDP)依赖性非氧化脱羧反应。 -3-丁烯酸(3-PKB)。 3-PKB的添加导致出现了两个连续形成的过渡中间体,第一个中间体形成了在477nm处具有λmax的预脱羧ThDP结合中间体,第二个中间体对应了第一个脱羧后的烯胺在437nm处具有λmax。纳米PKB-ThDP共价复合物和烯胺的形成/消耗的时间过程表明,脱羧作用比PKB-ThDP共价加合物的形成要慢。当将脱羧3-(吡啶-3-基)丙烯醛(PAA)的产物添加到BFDC时,在473 nm处又形成了λmax的吸光度,对应于PADP与ThDP的四面体加合物。将良好形成的BFDC晶体添加到PAA溶液中,导致ThDP与BFDC结合的BFDC结合的加合物具有高分辨率(1.34Å)结构,从而确认了C2α原子而不是烯胺的四面体性质,并且支持将473 nm处的λmax分配给PAA–ThDP加合物。 PAA-ThDP共价复合物的结构是BFDC上的产品-ThDP加合物的第一个例子。用3-PKB进行的类似研究表明已经发生了脱羧。还获得了将BFDC与苯甲醛一起孵育时烯胺中间体缓慢形成的证据,该苯甲醛是脱羧反应的产物,因此证实了它在反应路径中的存在。

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