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通过消除镁离子抑制作用和加速产物释放来激活嗜热栖热菌邻氨基苯甲酸磷酸核糖基转移酶

Activation of anthranilate phosphoribosyltransferase from Sulfolobus solfataricus by removal of magnesium inhibition and acceleration of product release .

作者信息

Schlee Sandra, Deuss Miriam, Bruning Marc, Ivens Andreas, Schwab Thomas, Hellmann Nadja, Mayans Olga, Sterner Reinhard

机构信息

Institute of Biophysics and Physical Biochemistry, University of Regensburg, Germany.

出版信息

Biochemistry. 2009 Jun 16;48(23):5199-209. doi: 10.1021/bi802335s.

Abstract

Anthranilate phosphoribosyltransferase from the hyperthermophilic archaeon Sulfolobus solfataricus (ssAnPRT) is encoded by the sstrpD gene and catalyzes the reaction of anthranilate (AA) with a complex of Mg(2+) and 5'-phosphoribosyl-alpha1-pyrophosphate (Mg.PRPP) to N-(5'-phosphoribosyl)-anthranilate (PRA) and pyrophosphate (PP(i)) within tryptophan biosynthesis. The ssAnPRT enzyme is highly thermostable (half-life at 85 degrees C = 35 min) but only marginally active at ambient temperatures (turnover number at 37 degrees C = 0.33 s(-1)). To understand the reason for the poor catalytic proficiency of ssAnPRT, we have isolated from an sstrpD library the activated ssAnPRT-D83G + F149S double mutant by metabolic complementation of an auxotrophic Escherichia coli strain. Whereas the activity of purified wild-type ssAnPRT is strongly reduced in the presence of high concentrations of Mg(2+) ions, this inhibition is no longer observed in the double mutant and the ssAnPRT-D83G single mutant. The comparison of the crystal structures of activated and wild-type ssAnPRT shows that the D83G mutation alters the binding mode of the substrate Mg.PRPP. Analysis of PRPP and Mg(2+)-dependent enzymatic activity indicates that this leads to a decreased affinity for a second Mg(2+) ion and thus reduces the concentration of enzymes with the inhibitory Mg(2).PRPP complex bound to the active site. Moreover, the turnover number of the double mutant ssAnPRT-D83G + F149S is elevated 40-fold compared to the wild-type enzyme, which can be attributed to an accelerated release of the product PRA. This effect appears to be mainly caused by an increased conformational flexibility induced by the F149S mutation, a hypothesis which is supported by the reduced thermal stability of the ssAnPRT-F149S single mutant.

摘要

嗜热古菌硫磺矿硫化叶菌(Sulfolobus solfataricus)的邻氨基苯甲酸磷酸核糖基转移酶(ssAnPRT)由sstrpD基因编码,在色氨酸生物合成过程中催化邻氨基苯甲酸(AA)与Mg(2+)和5'-磷酸核糖-α1-焦磷酸(Mg.PRPP)复合物反应生成N-(5'-磷酸核糖基)-邻氨基苯甲酸(PRA)和焦磷酸(PP(i))。ssAnPRT酶具有高度热稳定性(85℃半衰期 = 35分钟),但在环境温度下活性极低(37℃周转数 = 0.33 s(-1))。为了解ssAnPRT催化效率低下的原因,我们通过对营养缺陷型大肠杆菌菌株进行代谢互补,从sstrpD文库中分离出了活化的ssAnPRT-D83G + F149S双突变体。在高浓度Mg(2+)离子存在下,纯化的野生型ssAnPRT活性会大幅降低,而在双突变体和ssAnPRT-D83G单突变体中则不再观察到这种抑制现象。活化型和野生型ssAnPRT晶体结构的比较表明,D83G突变改变了底物Mg.PRPP的结合模式。对PRPP和Mg(2+)依赖性酶活性的分析表明,这导致对第二个Mg(2+)离子的亲和力降低,从而减少了活性位点结合有抑制性Mg(2).PRPP复合物的酶的浓度。此外,与野生型酶相比,双突变体ssAnPRT-D83G + F149S的周转数提高了40倍,这可归因于产物PRA的释放加速。这种效应似乎主要是由F149S突变引起的构象灵活性增加所致,这一假设得到了ssAnPRT-F149S单突变体热稳定性降低的支持。

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