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首页> 外文期刊>Physiological Reports >Role of sodium‐dependent Pi transporter/Npt2c on Pi homeostasis in klotho knockout mice different properties between juvenile and adult stages
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Role of sodium‐dependent Pi transporter/Npt2c on Pi homeostasis in klotho knockout mice different properties between juvenile and adult stages

机译:钠依赖性PI转运蛋白/ NPT2C对少年和成人阶段不同特性PI宿主的作用

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SLC34A3/NPT2c/NaPi‐2c/Npt2c is a growth‐related NaPi cotransporter that mediates the uptake of renal sodium‐dependent phosphate (Pi). Mutation of human NPT2c causes hereditary hypophosphatemic rickets with hypercalciuria. Mice with Npt2c knockout, however, exhibit normal Pi metabolism. To investigate the role of Npt2c in Pi homeostasis, we generated α‐klotho?/?/Npt2c?/? (KL2cDKO) mice and analyzed Pi homeostasis. α‐Klotho?/? (KLKO) mice exhibit hyperphosphatemia and markedly increased kidney Npt2c protein levels. Genetic disruption of Npt2c extended the lifespan of KLKO mice similar to that of α‐Klotho?/?/Npt2a?/? mice. Adult KL2cDKO mice had hyperphosphatemia, but analysis of Pi metabolism revealed significantly decreased intestinal and renal Pi (re)absorption compared with KLKO mice. The 1,25‐dihydroxy vitamin D3 concentration was not reduced in KL2cDKO mice compared with that in KLKO mice. The KL2cDKO mice had less severe soft tissue and vascular calcification compared with KLKO mice. Juvenile KL2cDKO mice had significantly reduced plasma Pi levels, but Pi metabolism was not changed. In Npt2cKO mice, plasma Pi levels began to decrease around the age of 15?days and significant hypophosphatemia developed within 21?days. The findings of the present study suggest that Npt2c contributes to regulating plasma Pi levels in the juvenile stage and affects Pi retention in the soft and vascular tissues in KLKO mice.
机译:SLC34A3 / NPT2C / NAPI-2C / NPT2C是一种生长相关的NAPI COTRANSPORTOR,介导肾依赖性磷酸盐(PI)的吸收。人NPT2C的突变导致血汗血磷肌佝偻病的血汗血症佝偻病。然而,具有NPT2C敲除的小鼠表现出正常的PI代谢。要探讨NPT2C在PI宿经中的作用,我们生成了α-Klotho?/?/ npt2c?/? (kl2cdko)小鼠和分析pi hoosostasis。 α-klotho?/? (Klko)小鼠表现出高磷血症并显着增加肾NPT2C蛋白水平。 NPT2C的遗传破坏延伸了klko小鼠的寿命与α-klotho的寿命延伸?/?/ npt2a?/?老鼠。成人KL2CDKO小鼠具有高磷血症,但与KLKO小鼠相比,PI代谢的分析显着降低了肠道和肾PI(RE)吸收。与Klko小鼠相比,在KL2CDKO小鼠中,1,25-二羟基维生素D3浓度未降低。与Klko小鼠相比,KL2CDKO小鼠具有较小的软组织和血管钙化。青少年KL2CDKO小鼠显着降低了血浆PI水平,但PI代谢没有改变。在NPT2CKO小鼠中,血浆PI水平开始减少15岁,在21天内开发的次磷血症和显着的次磷血症。本研究的发现表明,NPT2C有助于调节幼年阶段的血浆PI水平,并影响Klko小鼠的软和血管组织中的PI保留。

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