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Dihydrodipicolinate synthase (DHDPS) from Escherichia coli displays partial mixed inhibition with respect to its first substrate, pyruvate

机译:大肠杆菌的二氢二吡啶甲酸合酶(DHDPS)相对于其第一种底物丙酮酸表现出部分混合抑制

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Dihydrodipicolinate synthase (DHDPS, E.C. 4.2.1.52) mediates the first unique reaction of (S)-lysine biosynthesis in plants and microbes-the condensation of (S)-aspartate-beta-semialdehyde ((S)-ASA) and pyruvate. It has been shown that DHDPS is partially feedback inhibited by (S)-lysine; it is suggested that this mechanism regulates flux through the DAP biosynthetic pathway. Others have characterised DHDPS from Escherichia coli with respect to (S)-lysine inhibition. They have concluded that, with respect to pyruvate, the first substrate of the reaction, DHDPS shows uncompetitive inhibition: as such, they further suggest that (S)-lysine inhibits DHDPS via interaction with the binding site for the second substrate, (S)-ASA. Yet, this finding is based on the assumption that (S)-lysine is a fully uncompetitive inhibitor. In light of crystallographic studies, which lead to the proposal that (S)-lysine affects the putative proton-relay of DHDPS, we re-evaluated the inhibition mechanism of DHDPS with respect to (S)-lysine by incorporating the observed hyperbolic inhibition. Our data showed that lysine is not an uncompetitive inhibitor, but a mixed inhibitor when pyruvate and (S)-lysine concentrations were varied. Thus, consistent with the crystallographic data, (S)-lysine must have an effect on the initial steps of the DHDPS reaction, including the binding of pyruvate and Schiff base formation.
机译:二氢二吡啶甲酸合酶(DHDPS,E.C. 4.2.1.52)介导植物和微生物中(S)-赖氨酸生物合成的第一个独特反应-(S)-天冬氨酸-β-半醛((S)-ASA)与丙酮酸的缩合反应。已经证明DHDPS被(S)-赖氨酸部分抑制。建议该机制调节通过DAP生物合成途径的通量。其他人已经表征了来自大肠杆菌的DHDPS在(S)-赖氨酸抑制方面。他们得出结论,关于丙酮酸,反应的第一底物,DHDPS显示出非竞争性抑制作用;因此,他们进一步暗示(S)-赖氨酸通过与第二底物(S)的结合位点相互作用抑制DHDPS。 -作为一个。然而,该发现基于以下假设:(S)-赖氨酸是完全没有竞争性的抑制剂。根据晶体学研究,这导致提出(S)-赖氨酸影响DHDPS的质子继电器的提议,我们通过结合观察到的双曲线抑制作用,重新评估了DHDPS对(S)-赖氨酸的抑制机理。我们的数据显示,当丙酮酸和(S)-赖氨酸浓度变化时,赖氨酸不是竞争性抑制剂,而是混合抑制剂。因此,与晶体学数据一致,(S)-赖氨酸必须对DHDPS反应的初始步骤具有影响,包括丙酮酸和席夫碱形成的结合。

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