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Crystallographic snapshots of Aspergillus fumigatus phytase, revealing its enzymatic dynamics

机译:烟曲霉植酸酶的结晶学快照,揭示了其酶动力学

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摘要

Understanding of the atomic movements involved in an enzymatic reaction needs structural information on the active and inactive native enzyme molecules and on the enzyme-substrate, enzyme-intermediate, and enzyme-product(s) complexes. By using the X-ray crystallographic method, four crystal structures of Aspergillus fumigatus phytase were obtained at resolution higher than 1.7 Angstrom. The pH-dependent catalytic activity of A. fumigatus phytase was linked to three water molecules that may prevent the substrate from binding and thus block nucleophilic attack of the catalytic imidazole nitrogen. Comparison of various structures also identified the water molecule that attacks the phosphamide bond during the hydrolysis process, and established the hydrolysis pathway of the intermediate. Additionally, two reaction product phosphates were observed at the active site, suggesting a possible product release pathway after hydrolysis of the intermediate. These results can help explain the catalytic mechanism throughout the whole acid phosphatase family, as all key residues are conserved.
机译:对涉及酶促反应的原子运动的了解需要有关活性和非活性天然酶分子以及酶-底物,酶-中间体和酶-产物复合物的结构信息。通过使用X射线晶体学方法,获得了烟曲霉植酸酶的四个晶体结构,其分辨率高于1.7埃。烟曲霉植酸酶的pH依赖性催化活性与三个水分子相关,这三个水分子可能阻止底物结合,从而阻止催化咪唑氮的亲核攻击。各种结构的比较还确定了在水解过程中攻击磷酰胺键的水分子,并建立了中间体的水解途径。另外,在活性位点观察到两种反应产物磷酸酯,表明中间体水解后可能的产物释放途径。这些结果可帮助解释整个酸性磷酸酶家族的催化机制,因为所有关键残基均被保留。

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