首页> 外文OA文献 >Crystal Structure of Archaeoglobus fulgidus CTP:Inositol-1-Phosphate Cytidylyltransferase, a Key Enzyme for Di-myo-Inositol-Phosphate Synthesis in (Hyper)Thermophiles▿†
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Crystal Structure of Archaeoglobus fulgidus CTP:Inositol-1-Phosphate Cytidylyltransferase, a Key Enzyme for Di-myo-Inositol-Phosphate Synthesis in (Hyper)Thermophiles▿†

机译:巨古细菌CTP的晶体结构:肌醇-1-磷酸胞嘧啶转移酶,(超)嗜热菌中合成二-肌醇磷酸的关键酶▿†

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摘要

Many Archaea and Bacteria isolated from hot, marine environments accumulate di-myo-inositol-phosphate (DIP), primarily in response to heat stress. The biosynthesis of this compatible solute involves the activation of inositol to CDP-inositol via the action of a recently discovered CTP:inositol-1-phosphate cytidylyltransferase (IPCT) activity. In most cases, IPCT is part of a bifunctional enzyme comprising two domains: a cytoplasmic domain with IPCT activity and a membrane domain catalyzing the synthesis of di-myo-inositol-1,3′-phosphate-1′-phosphate from CDP-inositol and l-myo-inositol phosphate. Herein, we describe the first X-ray structure of the IPCT domain of the bifunctional enzyme from the hyperthermophilic archaeon Archaeoglobus fulgidus DSMZ 7324. The structure of the enzyme in the apo form was solved to a 1.9-Å resolution. The enzyme exhibited apparent Km values of 0.9 and 0.6 mM for inositol-1-phosphate and CTP, respectively. The optimal temperature for catalysis was in the range 90 to 95°C, and the Vmax determined at 90°C was 62.9 μmol · min−1 · mg of protein−1. The structure of IPCT is composed of a central seven-stranded mixed β-sheet, of which six β-strands are parallel, surrounded by six α-helices, a fold reminiscent of the dinucleotide-binding Rossmann fold. The enzyme shares structural homology with other pyrophosphorylases showing the canonical motif G-X-G-T-(R/S)-X4-P-K. CTP, l-myo-inositol-1-phosphate, and CDP-inositol were docked into the catalytic site, which provided insights into the binding mode and high specificity of the enzyme for CTP. This work is an important step toward the final goal of understanding the full catalytic route for DIP synthesis in the native, bifunctional enzyme.
机译:从炎热的海洋环境中分离出来的许多古细菌和细菌主要是对热应激作出反应而积聚磷酸二肌醇磷酸酯(DIP)。这种相容性溶质的生物合成涉及通过最近发现的CTP:肌醇-1-磷酸胞苷转移酶(IPCT)活性的作用将肌醇活化为CDP-肌醇。在大多数情况下,IPCT是包含两个结构域的双功能酶的一部分:具有IPCT活性的胞质结构域和催化从CDP-肌醇合成二-肌醇-1,3'-磷酸酯-1'-磷酸酯的膜结构域。和l-肌醇磷酸酯在本文中,我们描述了来自超嗜热古细菌古细菌古菌DSMZ 7324的双功能酶的IPCT结构域的第一个X射线结构。载脂蛋白形式的酶结构解析为1.9Å分辨率。该酶的肌醇-1-磷酸和CTP的表观Km值分别为0.9和0.6 mM。催化的最佳温度为90至95°C,在90°C时测定的Vmax为62.9μmol·min-1·mg蛋白质-1。 IPCT的结构由中央的7链混合β-折叠组成,其中6条β链是平行的,被6个α螺旋围绕,这一折叠让人联想到结合二核苷酸的Rossmann折叠。该酶与其他焦磷酸酶具有结构同源性,显示出典型的基序G-X-G-T-(R / S)-X4-P-K。 CTP,1-肌醇-1-磷酸和CDP-肌醇停靠在催化位点,这为该酶对CTP的结合模式和高特异性提供了见识。这项工作是朝着理解天然双功能酶中DIP合成的完整催化路线这一最终目标迈出的重要一步。

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