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X-ray diffraction structure of a cell-wall invertase from Arabidopsis thaliana

机译:x射线衍射结构的细胞壁从拟南芥转化酶

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Cell-wall invertases play crucial roles during plant development. They hydrolyse sucrose into its fructose and glucose subunits by cleavage of the alpha 1 - beta 2 glycosidic bond. Here, the structure of the Arabidopsis thaliana cell-wall invertase 1 (AtcwINV1; gene accession code At3g13790) is described at a resolution of 2.15 angstrom. The structure comprises an N-terminal fivefold beta-propeller domain followed by a C-terminal domain formed by two beta-sheets. The active site is positioned in the fivefold beta-propeller domain, containing the nucleophile Asp23 and the acid/base catalyst Glu203 of the double-displacement enzymatic reaction. The function of the C-terminal domain remains unknown. Unlike in other GH 32 family enzyme structures known to date, in AtcwINV1 the cleft formed between both domains is blocked by Asn299-linked carbohydrates. A preliminary site-directed mutagenesis experiment (Asn299Asp) removed the glycosyl chain but did not alter the activity profile of the enzyme.
机译:细胞壁中活性起着至关重要的作用工厂的发展。果糖和葡萄糖的乳沟子单元α1 -β2糖苷键。拟南芥细胞壁的结构转化酶1 (AtcwINV1;At3g13790)是描述在一个分辨率为2.15埃。5倍beta-propeller域了c端域由两个β折叠。活性位点定位的五倍beta-propeller域,包含亲核试剂Asp23的酸/碱催化剂Glu203复分解反应酶。函数的c端领域依然存在未知的。结构已知的日期,在AtcwINV1间隙在两个域之间被形成的Asn299-linked碳水化合物。定点诱变实验(Asn299Asp)把糖基链但没有改变活动的酶。

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