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首页> 外文期刊>Journal of Molecular Biology >High-resolution analysis of Zn 2+ coordination in the alkaline phosphatase superfamily by EXAFS and x-ray crystallography
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High-resolution analysis of Zn 2+ coordination in the alkaline phosphatase superfamily by EXAFS and x-ray crystallography

机译:用EXAFS和X射线晶体学高分辨率分析碱性磷酸酶超家族中Zn 2+的配位

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Comparisons among evolutionarily related enzymes offer opportunities to reveal how structural differences produce different catalytic activities. Two structurally related enzymes, Escherichia coli alkaline phosphatase (AP) and Xanthomonas axonopodis nucleotide pyrophosphatase/phosphodiesterase (NPP), have nearly identical binuclear Zn 2+ catalytic centers but show tremendous differential specificity for hydrolysis of phosphate monoesters or phosphate diesters. To determine if there are differences in Zn 2+ coordination in the two enzymes that might contribute to catalytic specificity, we analyzed both x-ray absorption spectroscopic and x-ray crystallographic data. We report a 1.29-? crystal structure of AP with bound phosphate, allowing evaluation of interactions at the AP metal site with high resolution. To make systematic comparisons between AP and NPP, we measured zinc extended x-ray absorption fine structure for AP and NPP in the free-enzyme forms, with AMP and inorganic phosphate ground-state analogs and with vanadate transition-state analogs. These studies yielded average zinc-ligand distances in AP and NPP free-enzyme forms and ground-state analog forms that were identical within error, suggesting little difference in metal ion coordination among these forms. Upon binding of vanadate to both enzymes, small increases in average metal-ligand distances were observed, consistent with an increased coordination number. Slightly longer increases were observed in NPP relative to AP, which could arise from subtle rearrangements of the active site or differences in the geometry of the bound vanadyl species. Overall, the results suggest that the binuclear Zn 2+ catalytic site remains very similar between AP and NPP during the course of a reaction cycle.
机译:进化相关酶之间的比较提供了揭示结构差异如何产生不同催化活性的机会。两种结构相关的酶,即大肠杆菌碱性磷酸酶(AP)和轴生黄单胞菌核苷酸焦磷酸酶/磷酸二酯酶(NPP),具有几乎相同的双核Zn 2+催化中心,但对磷酸单酯或磷酸二酯的水解显示出巨大的差异特异性。为了确定两种酶中Zn 2+配位是否存在差异,这可能有助于催化特异性,我们分析了X射线吸收光谱和X射线晶体学数据。我们报告1.29-?结合磷酸盐的AP的晶体结构,可以高分辨率评估AP金属位点的相互作用。为了在AP和NPP之间进行系统比较,我们测量了AMP和无机磷酸盐基态类似物以及钒酸盐过渡态类似物以自由酶形式对AP和NPP的锌扩展X射线吸收精细结构。这些研究得出了AP和NPP自由酶形式和基态类似物形式在错误范围内均相同的平均锌配体距离,表明这些形式之间的金属离子配位几乎没有差异。钒酸盐与两种酶结合后,观察到平均金属-配体距离略有增加,与增加的配位数一致。相对于AP,在NPP中观察到稍长的增加,这可能是由于活性位点的细微重排或结合的钒基物质的几何结构差异引起的。总体而言,结果表明在反应周期过程中,AP和NPP之间的双核Zn 2+催化位点仍然非常相似。

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