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Structure and Dynamics of a Promiscuous Xanthan Lyase from Paenibacillus nanensis and the Design of Variants with Increased Stability and Activity

机译:斜斜肌的结构和动力学 - 斜体>稳定性和活动增加的变体设计

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We have characterized the structure and dynamics of the carbohydrate-modifying enzymePaenibacillus nanensisxanthan lyase (PXL) involved in the degradation of xanthan by X-ray crystallography, small-angle X-ray scattering, and hydrogen/deuterium exchange mass spectrometry. Unlike other xanthan lyases, PXL is specific for both unmodified mannose and pyruvylated mannose, which we find is correlated with structural differences in the substrate binding groove. The structure of the full-length enzyme reveals two additional C-terminal modules, one of which belongs to a new non-catalytic carbohydrate binding module family. Ca2+are critical for the activity and conformation of PXL, and we show that their removal by chelating agents results in localized destabilization/unfolding of particularly the C-terminal modules. We use the structure and the revealed impact of Ca2+coordination on conformational dynamics to guide the engineering of PXL variants with increased activity and stability in a chelating environment, thus expanding the possibilities for industrial applications of PXL.
机译:我们已经表征了X射线晶体学,小角度X射线散射和氢气/氘交换质谱法涉及X阴天降解的碳水化合物改性酶的结构和动力学。与其他黄原碱酶不同,PXL对于未修饰的甘露糖和丙酮化甘露糖,我们发现与基板结合槽的结构差相关。全长酶的结构揭示了两种另外的C末端模块,其中一个是新的非催化碳水化合物结合模块家族。 CA2 +对于PXL的活性和构象至关重要,并且我们表明它们通过螯合剂的除去导致局部稳定/展开特别是C末端模块。我们使用CA2 +协调对构象动态的结构和透露影响,以指导PXL变体的工程在螯合环境中增加的活性和稳定性,从而扩大了PXL的工业应用的可能性。

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