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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >PiT1/Slc20a1 Is Required for Endoplasmic Reticulum Homeostasis, Chondrocyte Survival, and Skeletal Development
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PiT1/Slc20a1 Is Required for Endoplasmic Reticulum Homeostasis, Chondrocyte Survival, and Skeletal Development

机译:内质网稳态,软骨细胞存活和骨骼发育需要PIT1 / SLC20A1

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摘要

During skeletal mineralization, the sodium-phosphate co-transporter PiT1Slc20a1 is assumed to meet the phosphate requirements of bone-forming cells, although evidence is missing. Here, we used a conditional gene deletion approach to determine the role of PiT1 in growth plate chondrocytes. We show that PiT1 ablation shortly after birth generates a rapid and massive cell death in the center of the growth plate, together with an uncompensated endoplasmic reticulum (ER) stress, characterized by morphological changes and increased Chop, Atf4, and Bip expression. PiT1 expression in chondrocytes was not found at the cell membrane but co-localized with the ER marker ERp46, and was upregulated by the unfolded protein response cascade. In addition, we identified the protein disulfide isomerase (Pdi) ER chaperone as a PiT1 binding partner and showed that PiT1 ablation impaired Pdi reductase activity. The ER stress induced by PiT1 deficiency in chondrocytes was associated with intracellular retention of aggrecan and vascular endothelial growth factor A (Vegf-A), which was rescued by overexpressing a phosphate transport-deficient mutant of PiT1. Our data thus reveal a novel, Pi-transport independent function of PiT1, as a critical modulator of ER homeostasis and chondrocyte survival during endochondral ossification. (c) 2018 American Society for Bone and Mineral Research.
机译:在骨架矿化期间,假设磷酸钠共转运液PIT1SLC20A1满足骨形成细胞的磷酸盐要求,尽管证据缺失。在这里,我们使用条件基因缺失方法来确定PIT1在生长蛋白软骨细胞中的作用。我们表明,出生后不久的PIT1消融在生长板的中心产生了快速和巨大的细胞死亡,以及未补偿的内质网(ER)应力,其特征在于形态学变化和增加的斩波,ATF4和BIP表达。在细胞膜中未发现软骨细胞中的PIT1表达,而是用ER标记ERP46共定,并通过展开的蛋白质反应级联上调。此外,我们将蛋白二硫化物异构酶(PDI)ER伴侣作为PIT1结合伴鉴定,并表明PIT1消融受损的PDI还原酶活性。在软骨细胞中缺乏缺陷诱导的ER应激与骨髓内皮和血管内皮生长因子A(VEGF-A)的细胞内保留有关,其通过过表达PIT1的磷酸盐缺陷型突变体来抵抗。因此,我们的数据揭示了PIT1的一种新型,PI-传输独立功能,作为ER稳态和软骨细胞化的临界调节剂在内因骨化期间。 (c)2018年美国骨骼和矿物学学会。

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