首页> 美国卫生研究院文献>International Journal of Endocrinology >Ghrelin Increases Beta-Catenin Level through Protein Kinase A Activation and Regulates OPG Expression in Rat Primary Osteoblasts
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Ghrelin Increases Beta-Catenin Level through Protein Kinase A Activation and Regulates OPG Expression in Rat Primary Osteoblasts

机译:Ghrelin通过蛋白激酶A激活增加β-catenin水平并调节大鼠原代成骨细胞中OPG的表达

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摘要

Ghrelin, by binding growth hormone secretagogue receptor (GHS-R), promotes osteoblast proliferation but the signaling mechanism of GHS-R on these cells remains unclear. Since canonical Wnt/β-catenin pathway is critically associated with bone homeostasis, we investigated its involvement in mediating ghrelin effects in osteoblasts and in osteoblast-osteoclast cross talk. Ghrelin (10−10M) significantly increased β-catenin levels in rat osteoblasts (rOB). This stimulatory action on β-catenin involves a specific interaction with GHS-R1a, as it is prevented by the selective GHS-R1a antagonist, D-Lys3-GHRP-6 (10−7M). The effect of ghrelin on β-catenin involves the phosphorylation and inactivation of GSK-3β via protein kinase A (PKA). Inhibition of PKA activity reduces the facilitatory action of ghrelin on β-catenin stabilization. Ghrelin treatment of rOB significantly increases the expression of osteoprotegerin (OPG), which plays an important role in the regulation of osteoclastogenesis, and this effect is blocked by D-Lys3-GHRP-6. Furthermore, ghrelin reduced RANKL/OPG ratio thus contrasting osteoclastogenesis. Accordingly, conditioned media from rOB treated with ghrelin decreased the number of multinucleated TRAcP+ cells as compared with the conditioned media from untreated-control rOB. Our data suggest new roles for ghrelin in modulating bone homeostasis via a specific interaction with GHSR-1a in osteoblasts with subsequent enhancement of both β-catenin levels and OPG expression.
机译:Ghrelin通过结合生长激素促分泌素受体(GHS-R)促进成骨细胞增殖,但GHS-R在这些细胞上的信号传导机制仍不清楚。由于典型的Wnt /β-catenin途径与骨稳态密切相关,因此我们研究了其在介导成骨细胞和成骨细胞与破骨细胞串扰中促生长素释放肽作用的介导作用。 Ghrelin(10 −10 M)显着增加大鼠成骨细胞(rOB)中的β-catenin水平。对β-catenin的这种刺激作用涉及与GHS-R1a的特异性相互作用,因为选择性的GHS-R1a拮抗剂D-Lys 3 -GHRP-6(10 −7 M)。 ghrelin对β-catenin的作用包括通过蛋白激酶A(PKA)使GSK-3β磷酸化和失活。抑制PKA活性会降低ghrelin对β-catenin稳定的促进作用。 Ghrelin处理的rOB显着增加了骨保护素(OPG)的表达,这在破骨细胞生成的调节中起着重要作用,而这种作用被D-Lys 3 -GHRP-6阻断。此外,ghrelin降低了RANKL / OPG的比例,从而与破骨细胞形成形成了对比。因此,与来自未处理的对照rOB的条件培养基相比,用生长素释放肽处理的rOB的条件培养基减少了多核TRAcP +细胞的数量。我们的数据表明,ghrelin通过与成骨细胞中GHSR-1a的特异性相互作用,进而增强β-catenin水平和OPG表达,在调节骨稳态中发挥了新的作用。

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