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Proc Natl Acad Sci U S A. 1998 Apr 28;95(9):5372-7. doi: 10.1073/pnas.95.9.5372.
2
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3
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4
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Identification of the type II Na(+)-Pi cotransporter (Npt2) in the osteoclast and the skeletal phenotype of Npt2-/- mice.破骨细胞中II型钠-磷共转运体(Npt2)的鉴定及Npt2基因敲除小鼠的骨骼表型
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10
1alpha-Hydroxylase gene ablation and Pi supplementation inhibit renal calcification in mice homozygous for the disrupted Npt2a gene.1α-羟化酶基因缺失与补充磷可抑制Npt2a基因敲除纯合子小鼠的肾钙化。
Am J Physiol Renal Physiol. 2004 Apr;286(4):F675-81. doi: 10.1152/ajprenal.00362.2003. Epub 2003 Dec 2.

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本文引用的文献

1
Analysis of osteocalcin expression in transgenic mice reveals a species difference in vitamin D regulation of mouse and human osteocalcin genes.对转基因小鼠骨钙素表达的分析揭示了小鼠和人类骨钙素基因在维生素D调节方面的物种差异。
J Bone Miner Res. 1997 Oct;12(10):1570-6. doi: 10.1359/jbmr.1997.12.10.1570.
2
Assignment of renal-specific Na(+)-phosphate cotransporter gene Slc17a2 to mouse chromosome band 13B by in situ hybridization.通过原位杂交将肾特异性钠-磷酸盐共转运蛋白基因Slc17a2定位到小鼠染色体带13B。
Cytogenet Cell Genet. 1997;77(3-4):304-5. doi: 10.1159/000134603.
3
Targeted ablation of the vitamin D receptor: an animal model of vitamin D-dependent rickets type II with alopecia.维生素D受体的靶向消融:一种伴有脱发的II型维生素D依赖性佝偻病动物模型。
Proc Natl Acad Sci U S A. 1997 Sep 2;94(18):9831-5. doi: 10.1073/pnas.94.18.9831.
4
Mice lacking the vitamin D receptor exhibit impaired bone formation, uterine hypoplasia and growth retardation after weaning.缺乏维生素D受体的小鼠在断奶后表现出骨形成受损、子宫发育不全和生长迟缓。
Nat Genet. 1997 Aug;16(4):391-6. doi: 10.1038/ng0897-391.
5
High resolution mapping of the renal sodium-phosphate cotransporter gene (NPT2) confirms its localization to human chromosome 5q35.肾钠-磷酸共转运蛋白基因(NPT2)的高分辨率定位证实其定位于人类染色体5q35。
Pediatr Res. 1997 May;41(5):632-4. doi: 10.1203/00006450-199705000-00005.
6
Pex/PEX tissue distribution and evidence for a deletion in the 3' region of the Pex gene in X-linked hypophosphatemic mice.Pex/PEX在X连锁低磷血症小鼠中的组织分布以及Pex基因3'区域缺失的证据。
J Clin Invest. 1997 Mar 15;99(6):1200-9. doi: 10.1172/JCI119276.
7
Renal expression of Na+-phosphate cotransporter mRNA and protein: effect of the Gy mutation and low phosphate diet.钠-磷酸盐共转运体mRNA和蛋白在肾脏中的表达:Gy突变和低磷饮食的影响
Pflugers Arch. 1996 Apr;431(6):936-41. doi: 10.1007/s004240050088.
8
Structure of murine and human renal type II Na+-phosphate cotransporter genes (Npt2 and NPT2).小鼠和人类肾脏II型钠-磷酸盐共转运蛋白基因(Npt2和NPT2)的结构
Proc Natl Acad Sci U S A. 1996 Jul 9;93(14):7409-14. doi: 10.1073/pnas.93.14.7409.
9
Localization of NaPi-1, a Na/Pi cotransporter, in rabbit kidney proximal tubules. II. Localization by immunohistochemistry.兔肾近端小管中钠/磷共转运体NaPi-1的定位。II. 免疫组织化学定位
Pflugers Arch. 1993 Aug;424(3-4):210-5. doi: 10.1007/BF00384344.
10
Localization of NaPi-1, a Na-Pi cotransporter, in rabbit kidney proximal tubules. I. mRNA localization by reverse transcription/polymerase chain reaction.兔肾近端小管中钠-磷共转运体NaPi-1的定位。I. 逆转录/聚合酶链反应法进行mRNA定位
Pflugers Arch. 1993 Aug;424(3-4):203-9. doi: 10.1007/BF00384343.

小鼠中Npt2的靶向失活会导致严重的肾磷酸盐流失、高钙尿症和骨骼异常。

Targeted inactivation of Npt2 in mice leads to severe renal phosphate wasting, hypercalciuria, and skeletal abnormalities.

作者信息

Beck L, Karaplis A C, Amizuka N, Hewson A S, Ozawa H, Tenenhouse H S

机构信息

Departments of Pediatrics and Human Genetics, McGill University, Montreal Children's Hospital Research Institute, Montreal, PQ, Canada H3H 1P3.

出版信息

Proc Natl Acad Sci U S A. 1998 Apr 28;95(9):5372-7. doi: 10.1073/pnas.95.9.5372.

DOI:10.1073/pnas.95.9.5372
PMID:9560283
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC20268/
Abstract

Npt2 encodes a renal-specific, brush-border membrane Na+-phosphate (Pi) cotransporter that is expressed in the proximal tubule where the bulk of filtered Pi is reabsorbed. Mice deficient in the Npt2 gene were generated by targeted mutagenesis to define the role of Npt2 in the overall maintenance of Pi homeostasis, determine its impact on skeletal development, and clarify its relationship to autosomal disorders of renal Pi reabsorption in humans. Homozygous mutants (Npt2(-/-)) exhibit increased urinary Pi excretion, hypophosphatemia, an appropriate elevation in the serum concentration of 1,25-dihydroxyvitamin D with attendant hypercalcemia, hypercalciuria and decreased serum parathyroid hormone levels, and increased serum alkaline phosphatase activity. These biochemical features are typical of patients with hereditary hypophosphatemic rickets with hypercalciuria (HHRH), a Mendelian disorder of renal Pi reabsorption. However, unlike HHRH patients, Npt2(-/-) mice do not have rickets or osteomalacia. At weaning, Npt2(-/-) mice have poorly developed trabecular bone and retarded secondary ossification, but, with increasing age, there is a dramatic reversal and eventual overcompensation of the skeletal phenotype. Our findings demonstrate that Npt2 is a major regulator of Pi homeostasis and necessary for normal skeletal development.

摘要

Npt2编码一种肾脏特异性的刷状缘膜钠-磷酸盐(Pi)共转运蛋白,该蛋白在近端小管中表达,而大部分滤过的Pi在此处被重吸收。通过靶向诱变产生Npt2基因缺陷的小鼠,以确定Npt2在Pi稳态整体维持中的作用,确定其对骨骼发育的影响,并阐明其与人类肾Pi重吸收常染色体疾病的关系。纯合突变体(Npt2(-/-))表现出尿Pi排泄增加、低磷血症、血清1,25-二羟基维生素D浓度适当升高并伴有高钙血症、高钙尿症和血清甲状旁腺激素水平降低,以及血清碱性磷酸酶活性增加。这些生化特征是伴有高钙尿症的遗传性低磷性佝偻病(HHRH)患者的典型特征,HHRH是一种肾Pi重吸收的孟德尔疾病。然而,与HHRH患者不同,Npt2(-/-)小鼠没有佝偻病或骨软化症。断奶时,Npt2(-/-)小鼠的小梁骨发育不良,继发性骨化延迟,但随着年龄的增长,骨骼表型会出现戏剧性的逆转并最终过度补偿。我们的研究结果表明,Npt2是Pi稳态的主要调节因子,对正常骨骼发育是必需的。