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Whole-exome sequencing identifies mutations in the nucleoside transporter gene SLC29A3 in dysosteosclerosis a form of osteopetrosis

机译:全外显子测序可鉴定出骨硬化症形式的骨硬化症中核苷转运蛋白基因SLC29A3的突变

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摘要

Dysosteosclerosis (DSS) is the form of osteopetrosis distinguished by the presence of skin findings such as red-violet macular atrophy, platyspondyly and metaphyseal osteosclerosis with relative radiolucency of widened diaphyses. At the histopathological level, there is a paucity of osteoclasts when the disease presents. In two patients with DSS, we identified homozygous or compound heterozygous missense mutations in SLC29A3 by whole-exome sequencing. This gene encodes a nucleoside transporter, mutations in which cause histiocytosis–lymphadenopathy plus syndrome, a group of conditions with little or no skeletal involvement. This transporter is essential for lysosomal function in mice. We demonstrate the expression of Slc29a3 in mouse osteoclasts in vivo. In monocytes from patients with DSS, we observed reduced osteoclast differentiation and function (demineralization of calcium surface). Our report highlights the pleomorphic consequences of dysfunction of this nucleoside transporter, and importantly suggests a new mechanism for the control of osteoclast differentiation and function.
机译:营养不良性硬化症(DSS)是骨质增生的一种形式,其特征是存在皮肤,例如红紫色黄斑萎缩,滑石型和干phy端性骨硬化,且相对的透照度高。在组织病理学水平上,当疾病出现时破骨细胞很少。在两名DSS患者中,我们通过全外显子组测序鉴定了SLC29A3中的纯合或复合杂合错义突变。该基因编码一个核苷转运蛋白,这种突变导致组织细胞增生-淋巴结病加综合征,这是一组很少或没有骨骼受累的疾病。该转运蛋白对于小鼠的溶酶体功能至关重要。我们证明了Slc29a3在小鼠破骨细胞体内的表达。在DSS患者的单核细胞中,我们观察到破骨细胞的分化和功能降低(钙表面脱矿质)。我们的报告突出了这种核苷转运蛋白功能异常的多态性后果,并重要地提出了控制破骨细胞分化和功能的新机制。

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