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Structural basis for two-step glucose trimming by glucosidase II involved in ER glycoprotein quality control

机译:葡萄糖酶II涉及ER糖蛋白质量控制的两步葡萄糖修剪的结构基础

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The endoplasmic reticulum (ER) has a sophisticated protein quality control system for the efficient folding of newly synthesized proteins. In this system, a variety of N-linked oligosaccharides displayed on proteins serve as signals recognized by series of intracellular lectins. Glucosidase II catalyzes two-step hydrolysis at α1,3-linked glucose-glucose and glucose-mannose residues of high-mannose-type glycans to generate a quality control protein tag that is transiently expressed on glycoproteins and recognized by ER chaperones. Here we determined the crystal structures of the catalytic α subunit of glucosidase II (GIIα) complexed with two different glucosyl ligands containing the scissile bonds of first- and second-step reactions. Our structural data revealed that the nonreducing terminal disaccharide moieties of the two kinds of substrates can be accommodated in a gourd-shaped bilocular pocket, thereby providing a structural basis for substrate-binding specificity in the two-step deglucosylation catalyzed by this enzyme.
机译:内质网(ER)具有复杂的蛋白质质量控​​制系统,用于高效折叠新合成的蛋白质。在该系统中,蛋白质上显示的各种N个连接的寡糖用作由一系列细胞内凝集素识别的信号。葡萄糖苷酶II催化在α1,3-连接的葡萄糖 - 葡萄糖和高甘露糖型聚糖的葡萄糖 - 甘蔗残留的两步水解,以产生质量控制蛋白标记,其在糖蛋白上瞬时表达并被ER伴侣识别。在这里,我们确定葡萄糖蛋白II(GIIα)的催化α亚基的晶体结构与含有第一和第二步骤反应的剪发键的两种不同的葡糖基配体络合。我们的结构数据显示,两种基板的未给药末端二糖部分可以容纳在葫芦形双穴位中,从而为该酶催化的两步含凝胶化学化的底物结合特异性提供了基础的结构基础。

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