Russell Sarah J, Ruddock Lloyd W, Salo Kirsi E H, Oliver Jason D, Roebuck Quentin P, Llewellyn David H, Roderick H Llewelyn, Koivunen Peppi, Myllyharju Johanna, High Stephen
School of Biological Sciences, University of Manchester, Smith Building, Oxford Road, Manchester M13 9PT, United Kingdom.
J Biol Chem. 2004 Apr 30;279(18):18861-9. doi: 10.1074/jbc.M400575200. Epub 2004 Feb 10.
ERp57 is a member of the protein disulfide isomerase (PDI) family that is located in the endoplasmic reticulum (ER) and characterized by its specificity for glycoproteins. Substrate selection by ERp57 is dependent upon its formation of discrete complexes with two ER resident lectins, soluble calreticulin and membrane-bound calnexin. It is these two lectins that directly associate with glycoproteins bearing correctly trimmed oligosaccharide side chains. Thus, ERp57 is presented with a preselected set of substrates upon which it can act, and the specific binding of calreticulin and calnexin to ERp57 is pivotal to the functions of the resulting complexes. To gain further insights into the formation of these ERp57-ER lectin complexes, we have investigated the regions of ERp57 that are specifically required for its binding to calreticulin. Using a quantitative pull-down assay to investigate the binding of ERp57/PDI chimeras to calreticulin, we define the b and b' domains of ERp57 as the minimal elements that are sufficient for complex formation. This analysis further identifies a novel role for the distinctive C-terminal extension of ERp57 in reconstituting complex formation to wild type levels. Using our understanding of substrate binding to the b' domain of PDI as a paradigm, we show that alterations to specific residues in the b' domain of ERp57 dramatically reduce or completely abolish its binding to calreticulin. On the basis of these data, we propose a model where the region of ERp57 equivalent to the primary substrate binding site of archetypal PDI is occupied by calreticulin and suggest that the ER lectins act as adaptor molecules that define the substrate specificity of ERp57.
内质网蛋白57(ERp57)是蛋白二硫键异构酶(PDI)家族的成员,位于内质网(ER)中,其特点是对糖蛋白具有特异性。ERp57的底物选择取决于它与两种内质网驻留凝集素(可溶性钙网蛋白和膜结合钙联蛋白)形成离散复合物。正是这两种凝集素直接与带有正确修剪的寡糖侧链的糖蛋白结合。因此,ERp57面对一组预先选择的可作用底物,而钙网蛋白和钙联蛋白与ERp57的特异性结合对于所形成复合物的功能至关重要。为了进一步深入了解这些ERp57-内质网凝集素复合物的形成,我们研究了ERp57中与钙网蛋白结合所特需的区域。通过定量下拉试验研究ERp57/PDI嵌合体与钙网蛋白的结合,我们将ERp57的b和b'结构域定义为足以形成复合物的最小元件。该分析进一步确定了ERp57独特的C末端延伸在将复合物形成恢复到野生型水平方面的新作用。以我们对底物与PDI的b'结构域结合的理解为范例,我们表明ERp57的b'结构域中特定残基的改变会显著降低或完全消除其与钙网蛋白的结合。基于这些数据,我们提出一个模型,其中ERp57中相当于原型PDI主要底物结合位点的区域被钙网蛋白占据,并表明内质网凝集素作为定义ERp57底物特异性的衔接分子。