Anheim Mathieu, López-Sánchez Uriel, Giovannini Donatella, Richard Anne-Claire, Touhami Jawida, N'Guyen Ludovic, Rudolf Gabrielle, Thibault-Stoll Anne, Frebourg Thierry, Hannequin Didier, Campion Dominique, Battini Jean-Luc, Sitbon Marc, Nicolas Gaël
Département de Neurologie, Hôpital de Hautepierre, CHU de Strasbourg, Strasbourg, France.
Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC), INSERM-U964/CNRS-UMR7104/Université de Strasbourg, Illkirch, France.
J Neurol. 2016 Aug;263(8):1559-64. doi: 10.1007/s00415-016-8166-4. Epub 2016 May 26.
Mutations in XPR1, a gene encoding an inorganic phosphate exporter, have recently been identified in patients with primary familial brain calcification (PFBC). Using Sanger sequencing, we screened XPR1 in 18 unrelated patients with PFBC and no SLC20A2, PDGFB, or PDGFRB mutation. XPR1 variants were tested in an in vitro physiological complementation assay and patient blood cells were assessed ex vivo for phosphate export. We identified a novel c.260T > C, p.(Leu87Pro) XPR1 variant in a 41-year-old man complaining of micrographia and dysarthria and demonstrating mild parkinsonism, cerebellar ataxia and executive dysfunction. Brain (123)I-Ioflupane scintigraphy showed marked dopaminergic neuron loss. Peripheral blood cells from the patient exhibited decreased phosphate export. XPR1 in which we introduced the mutation was not detectable at the cell surface and did not lead to phosphate export. These results confirm that loss of XPR1-mediated phosphate export function causes PFBC, occurring in less than 8 % of cases negative for the other genes, and may be responsible for parkinsonism.
原发性家族性脑钙化(PFBC)患者中最近发现了编码无机磷酸盐转运体的基因XPR1的突变。我们使用桑格测序法,对18名无SLC20A2、PDGFB或PDGFRB突变的散发性PFBC患者进行了XPR1筛查。在体外生理互补试验中检测了XPR1变体,并对患者血细胞的磷酸盐输出进行了离体评估。我们在一名41岁男性中发现了一种新的XPR1基因变体c.260T>C,p.(Leu87Pro),该男性主诉有书写过小症和构音障碍,并表现出轻度帕金森症、小脑共济失调和执行功能障碍。脑(123)I-碘氟烷闪烁扫描显示多巴胺能神经元明显缺失。该患者的外周血细胞表现出磷酸盐输出减少。引入该突变的XPR1在细胞表面无法检测到,也不能导致磷酸盐输出。这些结果证实,XPR1介导的磷酸盐输出功能丧失会导致PFBC,在其他基因阴性的病例中发生率不到8%,并且可能是帕金森症的病因。