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首页> 外文期刊>Biochemical and Biophysical Research Communications >Estrogen receptor and Wnt signaling interact to regulate early gene expression in response to mechanical strain in osteoblastic cells
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Estrogen receptor and Wnt signaling interact to regulate early gene expression in response to mechanical strain in osteoblastic cells

机译:雌激素受体和Wnt信号相互作用相互作用,调节成骨细胞中机械性应变的早期基因表达

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摘要

Bone mass homeostasis is regulated by an interaction of various factors, including growth factors, systemic hormones and mechanical loading. Two signal transduction pathways, the estrogen receptor (ER) and the Wnt/p-catenin signal transduction pathway, have been shown to have an important role in regulating osteoblast and osteoclast function and to be involved in mechanotransduction. Therefore, dysfunction of these pathways can lead to osteoporotic bone loss. However, less is known about the modulation of gene expression by the interaction of these pathways in response to mechanical strain. We performed in vitro stretch experiments using osteoblastic MC3T3-E1 cells to study the effect of both pathways and mechanical strain on the expression of cyclooxygenase-2 (Cox-2), which is involved in the synthesis of prostaglandins, modulators of bone formation and resorption. Using specific agonists and antagonists, we demonstrated a regulation by an interaction of these pathways in mechantransduc-tion. Estradiol (E2) had a sensitizing effect on mechanically induced Cox-2 expression, which seemed to be ligand-specific as it could be abolished using the antiestrogen ICI182,780. However, mechanical strain in the presence of Wnt signaling activators diminished both the E2 sensitizing effect and the stimulatory effect of Wnt signaling in the absence of strain. This interaction might be one regulatory mechanism by which mechanical loading exerts its role in bone mass homeostasis.
机译:骨骼质量体内平衡受多种因素相互作用的调节,包括生长因子,全身激素和机械负荷。两种信号转导途径,雌激素受体(ER)和Wnt / p-catenin信号转导途径,在调节成骨细胞和破骨细胞功能中起重要作用,并参与机械转导。因此,这些途径的功能障碍可导致骨质疏松性骨丢失。但是,关于这些信号响应机械应变的相互作用来调节基因表达的了解还很少。我们使用成骨细胞MC3T3-E1细胞进行了体外拉伸实验,研究了途径和机械应变对环氧合酶2(Cox-2)表达的影响,环氧合酶2(Cox-2)参与前列腺素的合成,骨形成和吸收的调节剂。使用特定的激动剂和拮抗剂,我们在机械转导中通过这些途径的相互作用证明了一种调节作用。雌二醇(E2)对机械诱导的Cox-2表达具有增敏作用,由于使用抗雌激素ICI182,780可以将其消除,因此雌二醇似乎是配体特异性的。但是,在存在Wnt信号激活剂的情况下的机械应变会降低E2的致敏作用和在不存在应变的情况下Wnt信号的刺激作用。这种相互作用可能是一种调节机制,机械负荷可通过这种调节机制发挥其在骨质稳态中的作用。

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