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小鼠中Sfrp4的成骨细胞靶向表达导致骨量降低。

Osteoblast-targeted expression of Sfrp4 in mice results in low bone mass.

作者信息

Nakanishi Rika, Akiyama Haruhiko, Kimura Hiroaki, Otsuki Bungo, Shimizu Motoyuki, Tsuboyama Tadao, Nakamura Takashi

机构信息

Department of Orthopaedic Surgery, Graduate School of Medicine, Kyoto University, Kyoto, Japan.

出版信息

J Bone Miner Res. 2008 Feb;23(2):271-7. doi: 10.1359/jbmr.071007.

Abstract

UNLABELLED

Transgenic mice overexpressing Sfrp4 in osteoblasts were established. These mice exhibited low bone mass caused by a decrease in bone formation.

INTRODUCTION

We recently reported that single nucleotide polymorphisms in the secreted frizzled-related protein 4 (Sfrp4) gene are responsible for low peak BMD in senescence-accelerated mouse (SAM) P6. In vitro studies revealed inhibition of osteoblast proliferation by Sfrp4, which is supposed to be mediated by canonical Wnt signaling.

MATERIALS AND METHODS

We examined the expression of Sfrp4 in neonate long bones by in situ hybridization and generated transgenic mice in which Sfrp4 was specifically overexpressed in osteoblasts under the control of a 2.3-kb Col1a1 osteoblast-specific promoter. Next, we compared the phenotype of Sfrp4 transgenic (Sfrp4 TG) mice with that of mice in which one allele of beta-catenin was conditionally disrupted in osteoblasts (betaChet), and administered lithium chloride (LiCl) to Sfrp4 TG mice.

RESULTS

Hemizygous Sfrp4 TG mice exhibited a 30% reduction of trabecular bone mass compared with that in wildtype littermates at 8 wk of age, and histomorphometrical analysis showed decreases in both osteoblast numbers and bone formation rate. betaChet mice exhibited a 17% reduction of trabecular bone mass in distal femora caused by an increase in the osteoclast number and a decrease in bone formation rate. Furthermore, LiCl administration rescued the bone phenotype of Sfrp4 TG mice.

CONCLUSIONS

Expression of Sfrp4 in periosteum and bone tissues suggested the role of Sfrp4 in osteoblasts, and we identified that overexpression of Sfrp4 in osteoblasts suppressed osteoblast proliferation, resulting in a decrease in bone formation in vivo. Partial suppression of beta-catenin/canonical Wnt signaling also impaired bone formation, and activation of the signaling restored low bone mass of Sfrp4 TG mice. Thus, these results indicate that Sfrp4 decreases bone formation at least in part by attenuating canonical Wnt signaling in vivo.

摘要

未标记

构建了在成骨细胞中过表达Sfrp4的转基因小鼠。这些小鼠表现出由于骨形成减少导致的低骨量。

引言

我们最近报道,分泌型卷曲相关蛋白4(Sfrp4)基因的单核苷酸多态性与衰老加速小鼠(SAM)P6的低峰值骨密度有关。体外研究显示Sfrp4抑制成骨细胞增殖,推测这是由经典Wnt信号介导的。

材料与方法

我们通过原位杂交检测了新生小鼠长骨中Sfrp4的表达,并构建了转基因小鼠,其中Sfrp4在2.3 kb Col1a1成骨细胞特异性启动子的控制下在成骨细胞中特异性过表达。接下来,我们比较了Sfrp4转基因(Sfrp4 TG)小鼠与成骨细胞中β-连环蛋白一个等位基因被条件性破坏的小鼠(βChet)的表型,并给Sfrp4 TG小鼠施用氯化锂(LiCl)。

结果

与8周龄的野生型同窝小鼠相比,半合子Sfrp4 TG小鼠的小梁骨量减少了30%,组织形态计量学分析显示成骨细胞数量和骨形成率均降低。βChet小鼠股骨远端小梁骨量减少了17%,这是由于破骨细胞数量增加和骨形成率降低所致。此外,施用LiCl挽救了Sfrp4 TG小鼠的骨表型。

结论

Sfrp4在骨膜和骨组织中的表达提示了Sfrp4在成骨细胞中的作用,我们发现成骨细胞中Sfrp4的过表达抑制了成骨细胞增殖,导致体内骨形成减少。β-连环蛋白/经典Wnt信号的部分抑制也损害了骨形成,而该信号的激活恢复了Sfrp4 TG小鼠的低骨量。因此,这些结果表明Sfrp4至少部分通过减弱体内经典Wnt信号来降低骨形成。

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