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The Crystal Structure of Arabidopsis VSP1 Reveals the Plant Class C-Like Phosphatase Structure of the DDDD Superfamily of Phosphohydrolases

机译:拟南芥Vsp1的晶体结构揭示磷酸水解酶的超家族DDDD的植物类类C磷酸酶结构

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摘要

Arabidopsis thaliana vegetative storage proteins, VSP1 and VSP2, are acid phosphatases and belong to the haloacid dehalogenase (HAD) superfamily. In addition to their potential nutrient storage function, they were thought to be involved in plant defense and flower development. To gain insights into the architecture of the protein and obtain clues about its function, we have tested their substrate specificity and solved the structure of VSP1. The acid phosphatase activities of these two enzymes require divalent metal such as magnesium ion. Conversely, the activity of these two enzymes is inhibited by vanadate and molybdate, but is resistant to inorganic phosphate. Both VSP1 and VSP2 did not exhibit remarkable activities to any physiological substrates tested. In the current study, we presented the crystal structure of recombinant VSP1 at 1.8 Å resolution via the selenomethionine single-wavelength anomalous diffraction (SAD). Specifically, an α-helical cap domain on the top of the α/β core domain is found to be involved in dimerization. In addition, despite of the low sequence similarity between VSP1 and other HAD enzymes, the core domain of VSP1 containing conserved active site and catalytic machinery displays a classic haloacid dehalogenase fold. Furthermore, we found that VSP1 is distinguished from bacterial class C acid phosphatase P4 by several structural features. To our knowledge, this is the first study to reveal the crystal structure of plant vegetative storage proteins.
机译:拟南芥营养贮藏蛋白VSP1和VSP2是酸性磷酸酶,属于卤酸脱卤酶(HAD)超家族。除了潜在的养分存储功能外,还认为它们与植物防御和花的发育有关。为了深入了解蛋白质的结构并获得有关其功能的线索,我们测试了其底物特异性并解决了VSP1的结构。这两种酶的酸性磷酸酶活性需要二价金属,例如镁离子。相反,这两种酶的活性被钒酸盐和钼酸盐抑制,但对无机磷酸盐具有抗性。 VSP1和VSP2对测试的任何生理底物均未表现出显着的活性。在当前的研究中,我们通过硒代蛋氨酸单波长异常衍射(SAD)提出了分辨率为1.8Å的重组VSP1的晶体结构。具体地,发现在α/β核心结构域顶部的α-螺旋帽结构域参与二聚化。此外,尽管VSP1与其他HAD酶之间的序列相似性较低,但VSP1的核心结构域包含保守的活性位点和催化机制,显示出经典的卤酸脱卤酶折叠。此外,我们发现VSP1与细菌C类酸性磷酸酶P4的区别在于几个结构特征。据我们所知,这是第一个揭示植物营养贮藏蛋白晶体结构的研究。

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