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成年期在表达(10kb)Dmp1的细胞中β-连环蛋白的缺失可阻止间歇性甲状旁腺激素诱导的骨量增加。

Adult-Onset Deletion of β-Catenin in (10kb)Dmp1-Expressing Cells Prevents Intermittent PTH-Induced Bone Gain.

作者信息

Kedlaya Rajendra, Kang Kyung Shin, Hong Jung Min, Bettagere Vidya, Lim Kyung-Eun, Horan Daniel, Divieti-Pajevic Paola, Robling Alexander G

机构信息

Department of Anatomy and Cell Biology (R.K., K.S.K., J.M.H., V.B., K.-E.L., D.H., A.G.R.), Indiana University School of Medicine, Indianapolis, Indiana 46202; Department of Molecular and Cell Biology (P.D.-P.), Boston University School of Dental Medicine, Boston, Massachusetts 02215; Department of Biomedical Engineering (A.G.R.), Indiana University-Purdue University at Indianapolis, Indianapolis, Indiana 46202; and Richard L. Roudebush Veterans Affairs Medical Center (A.G.R.), Indianapolis, Indiana 46202.

出版信息

Endocrinology. 2016 Aug;157(8):3047-57. doi: 10.1210/en.2015-1587. Epub 2016 Jun 2.

Abstract

β-Catenin (βcat) is a major downstream signaling node in canonical Wingless-related integration site (Wnt) signaling pathway, and its activity is crucial for canonical Wnt signal transduction. Wnt signaling has recently been implicated in the osteo-anabolic response to PTH, a potent calcium-regulating factor. We investigated whether βcat is essential for the anabolic action of intermittent PTH by generating male mice with adult-onset deletion of βcat in a subpopulation of bone cells (osteocytes and late-stage osteoblasts), treating them with an anabolic regimen of PTH, and measuring the skeletal responses. Male (10kb)Dmp1-CreERt2 transgenic mice that also harbored floxed loss-of-function βcat alleles (βcat(f/f)) were induced for Cre activity using tamoxifen, then injected daily with human PTH 1-34 (30 μg/kg) or vehicle for 5 weeks. Mice in which βcat was deleted showed either total lack of bone mineral density (BMD) gain, or BMD loss, and did not respond to PTH treatment. However, bone mass measurements in the trabecular compartment of the femur and spine revealed PTH-induced bone gain whether βcat was deleted or not. PTH-stimulated increases in periosteal and cancellous bone formation rates were not impaired by βcat deletion, but resorption markers and cortical porosity were significantly increased in induced mice, particularly induced mice treated with PTH. These results suggest that βcat is required for net-positive BMD effects of PTH therapy but that the anabolic effects per se of PTH treatment might not require osteocytic/osteoblastic βcat.

摘要

β-连环蛋白(βcat)是经典的无翅相关整合位点(Wnt)信号通路中的一个主要下游信号节点,其活性对于经典Wnt信号转导至关重要。最近研究发现,Wnt信号与对甲状旁腺激素(PTH,一种有效的钙调节因子)的骨合成代谢反应有关。我们通过构建在成年期骨细胞亚群(骨细胞和晚期成骨细胞)中缺失βcat的雄性小鼠,用PTH的合成代谢方案对其进行治疗,并测量骨骼反应,来研究βcat对于间歇性PTH的合成代谢作用是否必不可少。使用他莫昔芬诱导同时携带功能缺失的βcat等位基因(βcat(f/f))的雄性(10kb)Dmp1-CreERt2转基因小鼠的Cre活性,然后每天注射人PTH 1-34(30μg/kg)或溶剂,持续5周。βcat缺失的小鼠要么完全没有骨矿物质密度(BMD)增加,要么出现BMD降低,并且对PTH治疗无反应。然而,无论βcat是否缺失,股骨和脊柱小梁区的骨量测量结果都显示PTH诱导了骨量增加。βcat缺失并未损害PTH刺激的骨膜和松质骨形成率增加,但诱导小鼠,尤其是接受PTH治疗的诱导小鼠的骨吸收标志物和皮质骨孔隙率显著增加。这些结果表明,βcat是PTH治疗产生净正向BMD效应所必需的,但PTH治疗本身的合成代谢效应可能并不需要骨细胞/成骨细胞中的βcat。

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