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骨骼中骨桥蛋白水平升高导致 Akp2(-/-) 小鼠出现低磷酸酯酶症表型。

Elevated skeletal osteopontin levels contribute to the hypophosphatasia phenotype in Akp2(-/-) mice.

作者信息

Harmey Dympna, Johnson Kristen A, Zelken Jonathan, Camacho Nancy P, Hoylaerts Marc F, Noda Masaki, Terkeltaub Robert, Millán José Luis

机构信息

Burnham Institute for Medical Research, La Jolla, California 92037, USA.

出版信息

J Bone Miner Res. 2006 Sep;21(9):1377-86. doi: 10.1359/jbmr.060619.

Abstract

UNLABELLED

Increased levels of ePP(i) in mice deficient in TNALP (i.e., Akp2(-/-)) lead to elevated OPN concentrations. We examined the skeletal phenotype of mice lacking both OPN and TNALP and concluded that the increased OPN levels contribute to the hypophosphatasia phenotype characteristic of Akp2(-/-) mice. We also found that extracellular OPN regulates the PP(i) output by osteoblasts.

INTRODUCTION

Akp2(-/-) display mineralization deficiencies characterized by rickets/osteomalacia. This defect has been attributed to the increased levels of extracellular inorganic pyrophosphate (ePP(i)), a substrate of tissue-nonspecific alkaline phosphatase (TNALP) and a potent inhibitor of mineral deposition. Because elevated levels of ePP(i) induce Opn gene expression, the Akp2(-/-) mice also display increased levels of osteopontin (OPN), another inhibitor of mineralization.

MATERIALS AND METHODS

Akp2(-/-) mice were bred into the Opn(-/-) line. The resulting double knockout mice were analyzed for skeletal abnormalities by histology and muCT. Calvarial osteoblasts were assayed for their ability to mineralize in vitro and were probed for changes in gene expression.

RESULTS

Mice lacking both Akp2 and Opn showed partial normalization at the histological level with regard to mineral deposition and BMD. However, high ePP(i) levels remained in Akp2(-/-) mice. We found that Opn(-/-) mice have themselves elevated levels of ePP(i) attributable to an increase in Enpp1 and Ank expression and a concomitant downregulation of Akp2 expression in Opn(-/-) osteoblasts, but that Opn(-/-) mice have more mineralized osteoid than wildtype (WT) controls despite their elevated ePP(i) levels. Addition of exogenous OPN to Opn(-/-) osteoblasts results in downregulation of Enpp1 and Ank gene expression and a reduction of the PP(i) output by these cells.

CONCLUSIONS

Deletion of both Akp2 and Opn can partially rescue the hypomineralized phenotype of Akp2(-/-) mice. However, these double knockout mice do not display corrected ePP(i) levels, and we conclude that regulation of hydroxyapatite deposition requires the coordinated actions of both PP(i) and OPN and that the hypophosphatasia phenotype in Akp2(-/-) mice results from the combined inhibitory action of increased levels of both ePP(i) and OPN. Our data also suggest that the ePP(i)-mediated regulation of OPN and the OPN-mediated regulation of ePP(i) are linked counterregulatory mechanisms that control the concentrations of these two important mineralization inhibitors, OPN and ePP(i).

摘要

未标记

缺乏TNALP(即Akp2(-/-))的小鼠中ePP(i)水平升高导致骨桥蛋白(OPN)浓度升高。我们研究了同时缺乏OPN和TNALP的小鼠的骨骼表型,得出结论:OPN水平升高促成了Akp2(-/-)小鼠特征性的低磷酸酯酶症表型。我们还发现细胞外OPN调节成骨细胞的PP(i)输出。

引言

Akp2(-/-)表现出以佝偻病/骨软化症为特征的矿化缺陷。这种缺陷归因于细胞外无机焦磷酸(ePP(i))水平升高,ePP(i)是组织非特异性碱性磷酸酶(TNALP)的底物,也是矿化沉积的有效抑制剂。由于ePP(i)水平升高诱导Opn基因表达,Akp2(-/-)小鼠还表现出骨桥蛋白(OPN)水平升高,OPN是另一种矿化抑制剂。

材料与方法

将Akp2(-/-)小鼠与Opn(-/-)品系杂交。通过组织学和显微计算机断层扫描(muCT)分析所得的双敲除小鼠的骨骼异常情况。检测颅骨成骨细胞的体外矿化能力,并探究基因表达的变化。

结果

同时缺乏Akp2和Opn的小鼠在组织学水平上,矿化沉积和骨密度方面显示出部分正常化。然而,Akp2(-/-)小鼠中ePP(i)水平仍然很高。我们发现Opn(-/-)小鼠自身ePP(i)水平升高,这归因于Enpp1和Ank表达增加以及Opn(-/-)成骨细胞中Akp2表达的伴随下调,但尽管Opn(-/-)小鼠的ePP(i)水平升高,其矿化类骨质比野生型(WT)对照更多。向Opn(-/-)成骨细胞中添加外源性OPN会导致Enpp1和Ank基因表达下调以及这些细胞的PP(i)输出减少。

结论

Akp2和Opn的缺失可以部分挽救Akp2(-/-)小鼠的矿化不足表型。然而,这些双敲除小鼠并未显示出ePP(i)水平的校正,并且我们得出结论,羟基磷灰石沉积的调节需要PP(i)和OPN的协同作用,并且Akp2(-/-)小鼠中的低磷酸酯酶症表型是由ePP(i)和OPN水平升高的联合抑制作用导致的。我们的数据还表明,ePP(i)介导的OPN调节以及OPN介导的ePP(i)调节是相互关联的反调节机制,可控制这两种重要矿化抑制剂OPN和ePP(i)的浓度。

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