首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Structure of PhnP a Phosphodiesterase of the Carbon-Phosphorus Lyase Pathway for Phosphonate Degradation
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Structure of PhnP a Phosphodiesterase of the Carbon-Phosphorus Lyase Pathway for Phosphonate Degradation

机译:PhnP的结构一种碳-磷酸裂解酶途径的磷酸二酯酶用于降解磷酸盐。

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摘要

Carbon-phosphorus lyase is a multienzyme system encoded by the phn operon that enables bacteria to metabolize organophosphonates when the preferred nutrient, inorganic phosphate, is scarce. One of the enzymes encoded by this operon, PhnP, is predicted by sequence homology to be a metal-dependent hydrolase of the β-lactamase superfamily. Screening with a wide array of hydrolytically sensitive substrates indicated that PhnP is an enzyme with phosphodiesterase activity, having the greatest specificity toward bis(p-nitrophenyl)phosphate and 2′,3′-cyclic nucleotides. No activity was observed toward RNA. The metal ion dependence of PhnP with bis(p-nitrophenyl)phosphate as substrate revealed a distinct preference for Mn2+ and Ni2+ for catalysis, whereas Zn2+ afforded poor activity. The three-dimensional structure of PhnP was solved by x-ray crystallography to 1.4 resolution. The overall fold of PhnP is very similar to that of the tRNase Z endonucleases but lacks the long exosite module used by these enzymes to bind their tRNA substrates. The active site of PhnP contains what are probably two Mn2+ ions surrounded by an array of active site residues that are identical to those observed in the tRNase Z enzymes. A second, remote Zn2+ binding site is also observed, composed of a set of cysteine and histidine residues that are strictly conserved in the PhnP family. This second metal ion site appears to stabilize a structural motif.
机译:碳-磷裂解酶是由phn操纵子编码的多酶系统,当缺少首选的营养盐无机磷酸盐时,细菌可以代谢有机膦酸盐。由该操纵子编码的一种酶,PnP,通过序列同源性预测为β-内酰胺酶超家族的金属依赖性水解酶。用多种水解敏感性底物进行筛选表明,PnP是一种具有磷酸二酯酶活性的酶,对双(对硝基苯基)磷酸酯和2',3'-环核苷酸具有最大的特异性。没有观察到针对RNA的活性。 PhnP的金属离子依赖性以磷酸二(对硝基苯基)酯为底物显示出对Mn 2 + 和Ni 2 + 的明显偏好,而Zn 2 + 的活动能力较差。 PhnP的三维结构通过X射线晶体学解析为1.4分辨率。 PhnP的整体折叠与tRNase Z内切核酸酶的折叠非常相似,但缺乏这些酶用来结合其tRNA底物的长外位模块。 PhnP的活性位点可能含有大约两个Mn 2 + 离子,这些离子被一系列活性位点残基包围,这些残基与tRNase Z酶中观察到的相同。还观察到第二个远端Zn 2 + 结合位点,该位点由一组在PhnP家族中严格保守的半胱氨酸和组氨酸残基组成。该第二金属离子位点似乎稳定了结构基序。

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