首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Structural Studies of Medicago truncatula Histidinol Phosphate Phosphatase from Inositol Monophosphatase Superfamily Reveal Details of Penultimate Step of Histidine Biosynthesis in Plants
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Structural Studies of Medicago truncatula Histidinol Phosphate Phosphatase from Inositol Monophosphatase Superfamily Reveal Details of Penultimate Step of Histidine Biosynthesis in Plants

机译:肌醇单磷酸酶超家族的t藜苜蓿磷酸磷酸酶的结构研究揭示了植物中组氨酸生物合成的倒数第二步的细节

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摘要

The penultimate enzyme in the histidine biosynthetic pathway catalyzes dephosphorylation of l-histidinol 1-phosphate (HOLP) into l-histidinol. The recently discovered in Arabidopsis thaliana plant-type histidinol phosphate phosphatase (HPP) shares no homology with the two other HPP superfamilies known previously in prokaryotes and resembles myo-inositol monophosphatases (IMPases). In this work, identification of an HPP enzyme from a model legume, Medicago truncatula (MtHPP) was based on the highest sequence identity to A. thaliana enzyme. Biochemical assays confirmed that MtHPP was able to cleave inorganic phosphate from HOLP but not from d-myo-inositol-1-phosphate, the main substrate of IMPases. Dimers of MtHPP, determined by size exclusion chromatography, in the presence of CO2 or formaldehyde form mutual, methylene-bridged cross-links between Lys158 and Cys245 residues. Four high resolution crystal structures, namely complexes with HOLP (substrate), l-histidinol (product), and PO43− (by-product) as well as the structure showing the cross-linking between two MtHPP molecules, provide detailed structural information on the enzyme. Based on the crystal structures, the enzymatic reaction mechanism of IMPases is accustomed to fit the data for MtHPP. The enzymatic reaction, which requires Mg2+ cations, is catalyzed mainly by amino acid residues from the N-terminal domain. The C-terminal domain, sharing little identity with IMPases, is responsible for the substrate specificity (i.e. allows the enzyme to distinguish between HOLP and d-myo-inositol-1-phosphate). Structural features, mainly the presence of a conserved Asp246, allow MtHPP to bind HOLP specifically.
机译:组氨酸生物合成途径中的倒数第二个酶催化1-磷酸组氨酸1-磷酸(HOLP)脱磷酸为1-组氨酸。最近在拟南芥中发现的植物型海地丁酚磷酸磷酸酶(HPP)与原核生物中先前已知的其他两个HPP超家族没有同源性,类似于肌醇单磷酸酶(IMPases)。在这项工作中,从模型豆科植物紫花苜蓿(MedHPP)中鉴定HPP酶是基于与拟南芥酶的最高序列同一性。生化分析证实,MtHPP能够从HOLP裂解无机磷酸盐,而不能从IMPases的主要底物d-myo-inositol-1-phosphate裂解。 MtHPP的二聚体(通过尺寸排阻色谱法确定)在存在二氧化碳或甲醛的情况下会在Lys 158 和Cys 245 残基之间形成相互的,亚甲基桥连的交联键。四种高分辨率晶体结构,即与HOLP(底物),l-组氨酸(产物)和PO4 3-(副产物)的配合物,以及显示两个MtHPP之间交联的结构分子,提供有关酶的详细结构信息。根据晶体结构,IMPases的酶促反应机制已习惯于适合MtHPP的数据。需要Mg 2 + 阳离子的酶促反应主要由N端结构域的氨基酸残基催化。与IMPase几乎没有同一性的C末端结构域负责底物特异性(即允许酶区分HOLP和d-肌醇1磷酸酯)。结构特征(主要是保守的Asp 246 的存在)使MtHPP特异性结合HOLP。

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