作者
Andrea Legati,Donatella Giovannini,Gaël Nicolas,Uriel López-Sánchez,Beatriz Quintáns,João Ricardo Mendes de Oliveira,Renee Sears,Eliana Marisa Ramos,Elizabeth Spiteri,María Jesús Sobrido,Ãngel Carracedo,Cristina Castro-Fernández,Stéphanie Cubizolle,Brent L. Fogel,Cyril Goizet,Joanna C. Jen,Suppachok Kirdlarp,Anthony E. Lang,Zosia Miedzybrodzka,Witoon Mitarnun,Martin Paucar,Joseph E. Parisi,Jérémie Pariente,Anne Richard,Naomi Salins,Sheila A Simpson,Pasquale Striano,Per Svenningsson,François Tison,Vivek K. Unni,Olivier Vanakker,Marja W. Wessels,Suppachok Wetchaphanphesat,Michele Yang,François Boller,M. Arfan Ikram,Didier Hannequin,Marc Sitbon,Daniel H. Geschwind,Jean‐Luc Battini,Giovanni Coppola
摘要
Jean-Luc Battini, Giovanni Coppola and colleagues identify XPR1 mutations in several families with primary brain calcification. They further show that these mutations alter phosphate export activity, implicating defective phosphate homeostasis in the etiology of this disease. Primary familial brain calcification (PFBC) is a neurological disease characterized by calcium phosphate deposits in the basal ganglia and other brain regions and has thus far been associated with SLC20A2, PDGFB or PDGFRB mutations. We identified in multiple families with PFBC mutations in XPR1, a gene encoding a retroviral receptor with phosphate export function. These mutations alter phosphate export, implicating XPR1 and phosphate homeostasis in PFBC.