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与高骨量相关的LRP5错义突变可保护小鼠骨骼免受废用性和卵巢切除诱导的骨质减少。

Missense Mutations in LRP5 Associated with High Bone Mass Protect the Mouse Skeleton from Disuse- and Ovariectomy-Induced Osteopenia.

作者信息

Niziolek Paul J, Bullock Whitney, Warman Matthew L, Robling Alexander G

机构信息

Department of Anatomy & Cell Biology, Indiana University School of Medicine, Indianapolis, Indiana, United States of America.

Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana, United States of America.

出版信息

PLoS One. 2015 Nov 10;10(11):e0140775. doi: 10.1371/journal.pone.0140775. eCollection 2015.

Abstract

The low density lipoprotein receptor-related protein-5 (LRP5), a co-receptor in the Wnt signaling pathway, modulates bone mass in humans and in mice. Lrp5 knock-out mice have severely impaired responsiveness to mechanical stimulation whereas Lrp5 gain-of-function knock-in and transgenic mice have enhanced responsiveness to mechanical stimulation. Those observations highlight the importance of Lrp5 protein in bone cell mechanotransduction. It is unclear if and how high bone mass-causing (HBM) point mutations in Lrp5 alter the bone-wasting effects of mechanical disuse. To address this issue we explored the skeletal effects of mechanical disuse using two models, tail suspension and Botulinum toxin-induced muscle paralysis, in two different Lrp5 HBM knock-in mouse models. A separate experiment employing estrogen withdrawal-induced bone loss by ovariectomy was also conducted as a control. Both disuse stimuli induced significant bone loss in WT mice, but Lrp5 A214V and G171V were partially or fully protected from the bone loss that normally results from disuse. Trabecular bone parameters among HBM mice were significantly affected by disuse in both models, but these data are consistent with DEXA data showing a failure to continue growing in HBM mice, rather than a loss of pre-existing bone. Ovariectomy in Lrp5 HBM mice resulted in similar protection from catabolism as was observed for the disuse experiments. In conclusion, the Lrp5 HBM alleles offer significant protection from the resorptive effects of disuse and from estrogen withdrawal, and consequently, present a potential mechanism to mimic with pharmaceutical intervention to protect against various bone-wasting stimuli.

摘要

低密度脂蛋白受体相关蛋白5(LRP5)是Wnt信号通路中的一种共受体,可调节人类和小鼠的骨量。Lrp5基因敲除小鼠对机械刺激的反应严重受损,而Lrp5功能获得性基因敲入和转基因小鼠对机械刺激的反应增强。这些观察结果突出了Lrp5蛋白在骨细胞机械转导中的重要性。目前尚不清楚Lrp5中导致高骨量(HBM)的点突变是否以及如何改变机械性废用引起的骨质流失效应。为了解决这个问题,我们在两种不同的Lrp5 HBM基因敲入小鼠模型中,使用尾部悬吊和肉毒杆菌毒素诱导的肌肉麻痹这两种模型,探究了机械性废用对骨骼的影响。还进行了一项单独的实验,通过卵巢切除术诱导雌激素撤退性骨质流失作为对照。两种废用刺激均在野生型小鼠中诱导了显著的骨质流失,但Lrp5 A214V和G171V部分或完全免受了通常由废用导致的骨质流失。在两种模型中,废用均显著影响了HBM小鼠的小梁骨参数,但这些数据与双能X线吸收法(DEXA)数据一致,表明HBM小鼠未能继续生长,而非已有骨量的丢失。Lrp5 HBM小鼠的卵巢切除术导致了与废用实验中观察到的类似的对分解代谢的保护作用。总之,Lrp5 HBM等位基因对废用和雌激素撤退的吸收效应提供了显著的保护,因此,提出了一种通过药物干预来模拟以预防各种骨质流失刺激的潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9c1/4640505/f56d057d34b4/pone.0140775.g001.jpg

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