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Structure and Dynamics of UDP-Glucose Pyrophosphorylase from Arabidopsis thaliana with Bound UDP-Glucose and UTP

机译:结合UDP-葡萄糖和UTP的拟南芥UDP-葡萄糖焦磷酸化酶的结构和动力学

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摘要

The structure of the UDP-glucose pyrophosphorylase encoded by Arabidopsis thaliana gene At3g03250 has been solved to a nominal resolution of 1.86 Å. In addition, the structure has been solved in the presence of the substrates/products UTP and UDP-glucose to nominal resolutions of 1.64 Å and 1.85 Å. The three structures revealed a catalytic domain similar to that of other nucleotidyl-glucose pyrophosphorylases with a carboxy-terminal β-helix domain in a unique orientation. Conformational changes are observed between the native and substrate-bound complexes. The nucleotide binding loop and the carboxy-terminal domain, including the suspected catalytically important Lys360, move in and out of the active site in a concerted fashion. TLS refinement was employed to initially model conformational heterogeneity in the UDP-glucose complex followed by the use of multiconformer refinement for the entire molecule. Normal mode analysis generated atomic displacement predictions in good agreement in magnitude and direction with the observed conformational changes and anisotropic displacement parameters generated by TLS refinement. The structures and the observed dynamic changes provide insight into the ordered mechanism of this enzyme and previously described oligomerization effects on catalytic activity.
机译:由拟南芥基因At3g03250编码的UDP葡萄糖焦磷酸化酶的结构已被解析为1.86的标称分辨率。另外,在存在底物/产物UTP和UDP-葡萄糖的情况下,已经解决了该结构,其标称分辨率为1.64Å和1.85Å。这三个结构揭示了一个与其他核苷酸基-葡萄糖焦磷酸酶相似的催化结构域,其羧基末端的β-螺旋结构域具有独特的方向。在天然和底物结合的复合物之间观察到构象变化。核苷酸结合环和羧基末端结构域(包括怀疑具有催化作用的重要Lys360)以一致的方式移入和移出活性位点。 TLS精炼用于最初对UDP-葡萄糖复合物中的构象异质性建模,然后对整个分子使用多构体精炼。正态模式分析生成的原子位移预测在大小和方向上与观察到的构象变化和TLS细化产生的各向异性位移参数吻合得很好。结构和观察到的动态变化提供了对该酶的有序机制的了解,以及先前描述的低聚对催化活性的影响。

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