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Mechanistic Studies on Pyridoxal Phosphate Synthase: The Reaction Pathway Leading to a Chromophoric Intermediate

机译:吡y醛磷酸合酶的机理研究:导致发色中间体的反应途径

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Two routes for the de novo biosynthesis of pyridoxal-5'-phosphate (PLP) have been discovered and reconstituted in vitro. The most common pathway that organisms use is dependent upon the activity of just two enzymes, known as Pdx1 (YaaD) and Pdx2 (YaaE) in bacteria. Pdx2 has been shown to have glutaminase activity and most likely channels ammonia to the active site of the PLP synthase subunit, Pdx1, where ribose-5-phosphate (R5P), glyceraldehyde-3-phosphate (G3P), and ammonia are condensed in a complex series of reactions. In this report we investigated the early steps in the mechanism of PLP formation. Under pre-steady-state conditions, a chromophoric intermediate (I_(320)) is observed that accumulates upon addition of only two of the substrates, R5P and glutamine. The intermediate is covalently bound to the protein. We synthesized C5 monodeuterio (pro-R, pro-S) and dideuterio R5P and showed that there is a primary kinetic isotope effect on the formation of this intermediate using the pro-R but not the pro-S labeled isomer. Furthermore, it was shown that the phosphate unit of R5P is eliminated rather than hydrolyzed in route to intermediate formation and also that there is an observed C5-deuterium kinetic isotope effect on this elimination step. Interestingly, it was observed that the formation of the intermediate could be triggered in the absence of Pdx2 by the addition of high concentrations of NH_4CI to a preincubated solution of Pdx1 and R5P. The formation of I_(320) was also monitored using high-resolution electrospray ionization Fourier transform mass spectrometry and revealed a species of mass 34 304 Da (Pdx1 + 95 Da). These results allow us to narrow the mechanistic possibilities for the complex series of reactions involved in PLP formation.
机译:已经发现了从头生物合成5'-磷酸吡ido醛(PLP)的两种途径,并在体外进行了重组。生物体最常用的途径取决于细菌中两种酶的活性,即Pdx1(YaaD)和Pdx2(YaaE)。已显示Pdx2具有谷氨酰胺酶活性,最有可能将氨引导至PLP合酶亚基Pdx1的活性位点,其中核糖5磷酸(R5P),甘油3磷酸(G3P)和氨在一个冷凝器中冷凝。一系列复杂的反应。在本报告中,我们研究了PLP形成机理的早期步骤。在稳态之前的条件下,观察到发色中间体(I_(320))在仅添加两种底物R5P和谷氨酰胺时会累积。中间体与蛋白质共价结合。我们合成了C5单氘代(pro-R,pro-S)和二氘代R5P,并显示使用pro-R而非pro-S标记的异构体对该中间体的形成具有主要的动力学同位素效应。此外,显示出R5P的磷酸酯单元被消除而不是在中间体形成的过程中被水解,并且在该消除步骤上还观察到了C5-氘的动力学同位素效应。有趣的是,观察到在不存在Pdx2的情况下,可以通过向预孵育的Pdx1和R5P溶液中添加高浓度的NH_4Cl来触发中间体的形成。还使用高分辨率电喷雾电离傅立叶变换质谱法监测了I_(320)的形成,并揭示了质量为34 304 Da(Pdx1 + 95 Da)的物质。这些结果使我们能够缩小涉及PLP形成的一系列复杂反应的机械可能性。

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