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Characterization of XPR1/SLC53A1 variants located outside of the SPX domain in patients with primary familial brain calcification

机译:原发性家族性脑钙化患者中位于SPX域之外的XPR1 / SLC53A1变体的特征

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摘要

Primary familial brain calcification (PFBC) is a rare neurological disease characterized by deposits of calcium phosphate in the basal ganglia and other regions of the brain. Pathogenic variants in the XPR1/SLC53A1 gene, which encodes the only known inorganic phosphate exporter, cause an autosomal dominant form of PFBC. These variants are typically located in the SPX N-terminal domain of the protein. Here, we characterize three XPR1 variants outside of SPX in three PFBC patients with an apparently sporadic presentation: c.1375C > T p.(R459C), c.1855A > G p.(N619D) and c.1886T > G p.(I629S), with the latter identified as the first XPR1/SLC53A1 de novo mutation to occur in a PFBC proband. When tested in an in vitro physiological complementation assay, the three XPR1 variants were impaired in phosphate export function, although they were normally expressed at the cell surface and could serve as functional receptors for retrovirus entry. Moreover, peripheral blood cells from the p.N619D patient could be assayed ex vivo and displayed significantly impaired phosphate export. Our results establish for the first time the clinical and molecular characteristics of XPR1 variants located outside the SPX domain and assert a direct link between these variants, deficient phosphate export, and PFBC. Moreover, we unveiled new structural features in XPR1 C-terminal domain that play a role in phosphate export and disease.
机译:家族性原发性脑钙化(PFBC)是一种罕见的神经系统疾病,其特征是磷酸化钙沉积在基底神经节和大脑其他区域。 XPR1 / SLC53A1基因的致病变体编码唯一已知的无机磷酸盐输出,导致常染色体显性形式的PFBC。这些变体通常位于蛋白质的SPX N末端结构域中。在此,我们以三例PFBC患者的零星表现来表征SPX之外的三个XPR1变体:c.1375C> T p。(R459C),c.1855A> G p。(N619D)和c.1886T> G p。( I629S),后者被确定为在PFBC先证者中发生的第一个XPR1 / SLC53A1 de novo突变。当在体外生理互补测定中进行测试时,尽管三个XPR1变异体通常在细胞表面表达,并且可以作为逆转录病毒进入的功能性受体,但它们的磷酸盐输出功能受损。此外,p.N619D患者的外周血细胞可以进行离体测定,并显示磷酸盐输出明显受损。我们的结果首次确定了位于SPX域之外的XPR1变体的临床和分子特征,并断言了这些变体,磷酸盐输出不足和PFBC之间的直接联系。此外,我们揭示了XPR1 C末端结构域的新结构特征,这些结构特征在磷酸盐输出和疾病中起作用。

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