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Osteoblast expression of an engineered G_s-coupled receptor dramatically increases bone mass

机译:工程化的G_s偶联受体的成骨细胞表达显着增加了骨量

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Osteoblasts are essential for maintaining bone mass, avoiding osteoporosis, and repairing injured bone. Activation of osteoblast G protein-coupled receptors (GPCRs), such as the parathyroid hormone receptor, can increase bone mass; however, the anabolic mechanisms are poorly understood. Here we use "Rs1," an engineered GPCR with constitutive G_s signaling, to evaluate the temporal and skeletal effects of G_s signaling in murine osteoblasts. In vivo, Rs1 expression induces a dramatic anabolic skeletal response, with midfemur girth increasing 1,200% and femur mass increasing 380% in 9-week-old mice. Bone volume, cellularity, areal bone mineral density, osteoblast gene markers, and serum bone turnover markers were also elevated. No such phenotype developed when Rs1 was expressed after the first 4 weeks of postnatal life, indicating an exquisite temporal sensitivity of osteoblasts to Rs1 expression. This pathway may represent an important determinant of bone mass and may open future avenues for enhancing bone repair and treating metabolic bone diseases.
机译:成骨细胞对于维持骨量,避免骨质疏松和修复受伤的骨骼至关重要。成骨细胞G蛋白偶联受体(如甲状旁腺激素受体)的激活会增加骨量;然而,同化机制了解甚少。在这里,我们使用“ Rs1”(一种具有组成型G_s信号传导的工程GPCR)来评估G_s信号传导在鼠成骨细胞中的时间和骨骼作用。在体内,Rs1表达诱导戏剧性的合成代谢骨骼反应,在9周龄小鼠中股骨中段周长增加1200%,股骨质量增加380%。骨体积,细胞密度,面骨矿物质密度,成骨细胞基因标志物和血清骨转换标志物也升高。在出生后前4周表达Rs1时,没有这种表型出现,表明成骨细胞对Rs1表达的时间敏感性极高。该途径可能代表骨量的重要决定因素,并可能为增强骨修复和治疗代谢性骨病开辟未来的途径。

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