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Stk11 (Lkb1) deletion in the osteoblast lineage leads to high bone turnover increased trabecular bone density and cortical porosity

机译:成骨细胞谱系中的Stk11(Lkb1)缺失导致高骨转换增加的小梁骨密度和皮质孔隙率

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摘要

The mTOR pathway couples energy homeostasis to growth, division and survival of the cell. Stk11/Lkb1 is a critical serine-threonine protein kinase in the inhibition of mTOR pathway action. In the mammalian skeleton, Stk11 regulates the transition between immature and hypertrophic chondrocytes. Here, we have focused on the action of Stk11in the osteoblast lineage through osteoblast specific-removal of Stk11 activity. In the mouse model system, specification and primary organization of the neonatal boney skeleton is independent of Stk11. However, histological, molecular and micro-CT analysis revealed a marked perturbation of normal bone development evident in the immediate post-natal period. Cortical bone was unusually porous displaying a high rate of turnover with new trabeculae forming in the endosteal space. Trabecular bone also showed enhanced turnover and marked increase in the density of trabeculae and number of osteoclasts. Though mutants showed an expansion of bone volume and trabecular number their bone matrix comprised large amounts of osteoid and irregularly deposited woven bone highlighted by diffuse fluorochrome labeling. Additionally, we observed an increase in fibroblast-like cells associated with trabecular bone in Stk11 mutants. Stk11 down-regulates mTORC1 activity through control of upstream modulators of the AMP kinase family: an increase in the levels of the phosphorylated ribosomal protein S6, a target of mTORC1-mediated kinase activity, on osteoblast removal of Stk11 suggests deregulated mTORC1 activity contributes to the osteoblast phenotype. These data demonstrate Stk11 activity within osteoblasts is critical for the development of normally structured bone regulating directly the number and coordinated actions of osteoblasts, and indirectly osteoclast number.
机译:mTOR途径将能量稳态与细胞的生长,分裂和存活耦合。 Stk11 / Lkb1是抑制mTOR通路作用中的关键丝氨酸-苏氨酸蛋白激酶。在哺乳动物骨骼中,Stk11调节未成熟和肥大软骨细胞之间的过渡。在这里,我们集中于Stk11通过成骨细胞特异性去除Stk11活性在成骨细胞谱系中的作用。在小鼠模型系统中,新生儿骨骼骨架的规格和主要组织独立于Stk11。但是,组织学,分子和显微CT分析显示,在出生后即刻,正常骨骼发育受到明显干扰。皮质骨具有异常的多孔性,显示出较高的周转率,并且在骨内膜间隙中形成了新的小梁。小梁骨还显示出增强的周转性,并且小梁密度和破骨细胞数量显着增加。尽管突变体显示出骨体积和骨小梁数目的增加,但是它们的骨基质包含大量的类骨质和不规则沉积的编织骨,并通过扩散荧光染料标记突出显示。此外,我们观察到Stk11突变体中与小梁骨相关的成纤维细胞样细胞增加。 Stk11通过控制AMP激酶家族的上游调节剂来下调mTORC1活性:成骨细胞去除Stk11时磷酸化核糖体蛋白S6(mTORC1介导的激酶活性的靶标)水平的升高表明mTORC1活性的失控有助于成骨细胞表型。这些数据表明,成骨细胞内的Stk11活性对于直接调节成骨细胞的数量和协调作用以及间接调节破骨细胞数量的正常结构骨的发育至关重要。

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