Sousa M, Parodi A J
Instituto de Investigaciones Bioquímicas Fundación Campomar, Buenos Aires, Argentina.
EMBO J. 1995 Sep 1;14(17):4196-203. doi: 10.1002/j.1460-2075.1995.tb00093.x.
The UDP-Glc:glycoprotein glucosyltransferase is a soluble enzyme of the endoplasmic reticulum that glucosylates protein-linked Man7-9GlcNAc2 to form the monoglucosylated derivatives. In vivo the reaction products are immediately deglucosylated by glucosidase II. The glucosyltransferase has a unique property: it glucosylates misfolded, but not native, glycoproteins. It has been proposed that the glucosyltransferase participates, together with calnexin, in the control mechanism by which only properly folded glycoproteins can exit from the endoplasmic reticulum. In this paper it is demonstrated that the glucosyltransferase recognizes two elements in the acceptor substrates: the innermost N-acetylglucosamine unit of the oligosaccharide and protein domains exposed in denatured, but not in native, conformations. Both determinants have to be covalently linked. In many cases the first element is not accessible to macromolecular probes in native conformations. Concerning the protein domains, it is demonstrated here that the glucosyltransferase interacts with hydrophobic amino acids exposed in denatured conformations. More disordered conformations, i.e. those exposing more hydrophobic amino acids, were found to be those having higher glucose acceptor capacity. It is suggested that both accessibility of the innermost N-acetylglucosamine unit and binding to hydrophobic patches determine the exclusive glucosylation of misfolded conformations by the glucosyltransferase.
UDP-葡萄糖:糖蛋白葡糖基转移酶是内质网中的一种可溶性酶,它将与蛋白质相连的Man7-9GlcNAc2进行葡糖基化,形成单葡糖基化衍生物。在体内,反应产物会立即被葡糖苷酶II去葡糖基化。葡糖基转移酶具有独特的性质:它能将错误折叠而非天然的糖蛋白进行葡糖基化。有人提出,葡糖基转移酶与钙连蛋白一起参与了一种控制机制,即只有正确折叠的糖蛋白才能从内质网中输出。本文证明,葡糖基转移酶在受体底物中识别两个元件:寡糖最内层的N-乙酰葡糖胺单元和在变性而非天然构象中暴露的蛋白质结构域。这两个决定因素必须共价连接。在许多情况下,第一个元件在天然构象中对大分子探针是不可接近的。关于蛋白质结构域,本文证明葡糖基转移酶与变性构象中暴露的疏水氨基酸相互作用。发现更无序的构象,即那些暴露更多疏水氨基酸的构象,具有更高的葡萄糖受体能力。有人提出,最内层N-乙酰葡糖胺单元的可及性和与疏水区域的结合决定了葡糖基转移酶对错误折叠构象的特异性葡糖基化。