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Structural insights into the catalytic mechanism of the yeast pyridoxal 5-phosphate synthase Snz1

机译:酵母吡ido醛5-磷酸合酶Snz1催化机制的结构见解。

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pIn most eubacteria, fungi, apicomplexa, plants and some metazoans, the active form of vitamin B6, PLP (pyridoxal 5-phosphate), is ide novo/i synthesized from three substrates, R5P (ribose 5-phosphate), DHAP (dihydroxyacetone phosphate) and ammonia hydrolysed from glutamine by a complexed glutaminase. Of the three active sites of DXP (deoxyxylulose 5-phosphate)independent PLP synthase (Pdx1), the R5P isomerization site has been assigned, but the sites for DHAP isomerization and PLP formation remain unknown. In the present study, we present the crystal structures of yeast Pdx1/Snz1, in apo-, G3P (glyceraldehyde 3-phosphate)- and PLP-bound forms, at 2.3, 1.8 and 2.2 ? (1 ?=0.1 nm) respectively. Structural and biochemical analysis enabled us to assign the PLP-formation site, a G3P-binding site and a G3P-transfer site. We propose a putative catalytic mechanism for Pdx1/Snz1 in which R5P and DHAP are isomerized at two distinct sites and transferred along well-defined routes to a final destination for PLP synthesis./p
机译:>在大多数真细菌,真菌,apicomplexa,植物和一些后生动物中,维生素B6的活性形式PLP(吡5-醛5-磷酸)是从三个底物R5P(核糖5)合成的。 -磷酸),DHAP(磷酸二羟基丙酮)和由谷氨酰胺经复合谷氨酰胺酶水解的氨。在不依赖DXP(脱氧木糖5-磷酸)的PLP合酶(Pdx1)的三个活性位点中,已分配了R5P异构化位点,但DHAP异构化和PLP形成的位点仍然未知。在本研究中,我们介绍了载脂蛋白,G3P(3-磷酸甘油醛)和PLP结合形式的酵母Pdx1 / Snz1的晶体结构,分别为2.3、1.8和2.2。 (1 = 0.1nm)。结构和生化分析使我们能够分配PLP形成位点,G3P结合位点和G3P转移位点。我们提出了一个Pdx1 / Snz1的推定催化机制,其中R5P和DHAP在两个不同的位点异构化,并沿着明确的路径转移到PLP合成的最终目的地。

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