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破骨细胞中 Kif3a 的缺失导致骨形成缺陷和骨质疏松症。

Disruption of Kif3a in osteoblasts results in defective bone formation and osteopenia.

机构信息

Department of Medicine, the University of Tennessee Health Science Center, Memphis, TN 38165, USA.

出版信息

J Cell Sci. 2012 Apr 15;125(Pt 8):1945-57. doi: 10.1242/jcs.095893. Epub 2012 Feb 22.

Abstract

We investigated whether Kif3a in osteoblasts has a direct role in regulating postnatal bone formation. We conditionally deleted Kif3a in osteoblasts by crossing osteocalcin (Oc; also known as Bglap)-Cre with Kif3a(flox/null) mice. Conditional Kif3a-null mice (Kif3a(Oc-cKO)) had a 75% reduction in Kif3a transcripts in bone and osteoblasts. Conditional deletion of Kif3a resulted in the reduction of primary cilia number by 51% and length by 27% in osteoblasts. Kif3a(Oc-cKO) mice developed osteopenia by 6 weeks of age unlike Kif3a(flox/+) control mice, as evidenced by reductions in femoral bone mineral density (22%), trabecular bone volume (42%) and cortical thickness (17%). By contrast, Oc-Cre;Kif3a(flox/+) and Kif3a(flox/null) heterozygous mice exhibited no skeletal abnormalities. Loss of bone mass in Kif3a(Oc-cKO) mice was associated with impaired osteoblast function in vivo, as reflected by a 54% reduction in mineral apposition rate and decreased expression of Runx2, osterix (also known as Sp7 transcription factor 7; Sp7), osteocalcin and Dmp1 compared with controls. Immortalized osteoblasts from Kif3a(Oc-cKO) mice exhibited increased cell proliferation, impaired osteoblastic differentiation, and enhanced adipogenesis in vitro. Osteoblasts derived from Kif3a(Oc-cKO) mice also had lower basal cytosolic calcium levels and impaired intracellular calcium responses to fluid flow shear stress. Sonic hedgehog-mediated Gli2 expression and Wnt3a-mediated β-catenin and Axin2 expression were also attenuated in Kif3a(Oc-cKO) bone and osteoblast cultures. These data indicate that selective deletion of Kif3a in osteoblasts disrupts primary cilia formation and/or function and impairs osteoblast-mediated bone formation through multiple pathways including intracellular calcium, hedgehog and Wnt signaling.

摘要

我们研究了成骨细胞中的 Kif3a 是否直接参与调节出生后骨形成。我们通过将骨钙素(Oc;也称为 Bglap)-Cre 与 Kif3a(flox/null) 小鼠杂交,条件性地在成骨细胞中删除 Kif3a。条件性 Kif3a 缺失小鼠(Kif3a(Oc-cKO))的骨和成骨细胞中的 Kif3a 转录本减少了 75%。条件性删除 Kif3a 导致成骨细胞中的初级纤毛数量减少 51%,长度减少 27%。与 Kif3a(flox/+) 对照小鼠不同,Kif3a(Oc-cKO) 小鼠在 6 周龄时就出现了骨质疏松症,表现为股骨骨密度(22%)、小梁骨体积(42%)和皮质厚度(17%)降低。相比之下,Oc-Cre;Kif3a(flox/+) 和 Kif3a(flox/null) 杂合子小鼠没有骨骼异常。Kif3a(Oc-cKO) 小鼠的骨量丢失与体内成骨细胞功能受损有关,表现为矿化沉积率降低 54%,Runx2、osterix(也称为 Sp7 转录因子 7;Sp7)、骨钙素和 Dmp1 的表达降低,与对照组相比。来自 Kif3a(Oc-cKO) 小鼠的永生化成骨细胞表现出细胞增殖增加、成骨分化受损以及体外成脂分化增强。Kif3a(Oc-cKO) 小鼠来源的成骨细胞的基础胞质钙水平也较低,并且对流体剪切力的细胞内钙反应受损。Sonic hedgehog 介导的 Gli2 表达和 Wnt3a 介导的 β-catenin 和 Axin2 表达在 Kif3a(Oc-cKO) 骨和成骨细胞培养物中也减弱。这些数据表明,成骨细胞中 Kif3a 的选择性缺失破坏了初级纤毛的形成和/或功能,并通过包括细胞内钙、 hedgehog 和 Wnt 信号在内的多种途径损害了成骨细胞介导的骨形成。

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