Lemma Valentina, D'Agostino Massimo, Caporaso Maria Gabriella, Mallardo Massimo, Oliviero Giorgia, Stornaiuolo Mariano, Bonatti Stefano
Department of Molecular Medicine and Medical Biotechnology, University of Naples Federico II, 80131 Naples, Italy.
Sci Rep. 2013;3:2659. doi: 10.1038/srep02659.
Frizzled 4 belongs to the superfamily of G protein coupled receptors. The unstructured cytosolic tail of the receptor is essential for its activity. The mutation L501fsX533 in the fz4 gene results in a new COOH-tail of the receptor and causes a form of Familial exudative vitreoretinopathy. Here we show that the mutated tail is structured. Two amphipathic helices, displaying affinity for membranes and resembling the structure of Influenza Hemagglutinin fusion peptide, constitute the new fold. This tail induces the aggregation of the receptor in the Endoplasmic Reticulum and it is sufficient to block the export to the Golgi of a chimeric VSVG protein containing the mutated tail. Affecting the tail's structure, net charge or amphipathicity relocates the mutated Fz4 receptor to the Plasma Membrane. Such disorder-to-order structural transition was never described in GPCRs and opens a new scenario on the possible effect of mutations on unstructured regions of proteins.
卷曲蛋白4属于G蛋白偶联受体超家族。该受体无结构的胞质尾部对其活性至关重要。fz4基因中的L501fsX533突变导致受体产生新的COOH末端,并引发一种家族性渗出性玻璃体视网膜病变。在此我们表明,突变的尾部具有结构。两个两亲性螺旋对膜具有亲和力,且类似于流感血凝素融合肽的结构,构成了新的折叠。该尾部在内质网中诱导受体聚集,并且足以阻断含有突变尾部的嵌合VSVG蛋白向高尔基体的转运。影响尾部的结构、净电荷或两亲性会使突变的Fz4受体重新定位于质膜。这种无序到有序的结构转变在G蛋白偶联受体中从未被描述过,并且为突变对蛋白质无结构区域可能产生的影响开启了新的局面。