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ERα 信号调节 MMP3 的表达诱导 FasL 裂解和破骨细胞凋亡。

ERα signaling regulates MMP3 expression to induce FasL cleavage and osteoclast apoptosis.

机构信息

UCLA and Orthopaedic Hospital Department of Orthopaedic Surgery, Orthopaedic Hospital Research Center, David Geffen School of Medicine, UCLA, Los Angeles, CA, USA.

出版信息

J Bone Miner Res. 2013 Feb;28(2):283-90. doi: 10.1002/jbmr.1747.

Abstract

The benefits of estrogens on bone health are well established; how estrogens signal to regulate bone formation and resorption is less well understood. We show here that 17β-estradiol (E2)-induced apoptosis of bone-resorbing osteoclasts is mediated by cleavage and solubilization of osteoblast-expressed Fas ligand (FasL). U2OS-ERα osteoblast-like cells expressing an EGFP-tagged FasL at the C-terminus showed decreased fluorescence after E2 treatment, indicative of a cleavage event. Treatment of U2OS-ERα cultures with a specific MMP3 inhibitor in the presence of E2 blocked FasL cleavage and showed an increase in the number of EGFP-FasL+ cells. siRNA experiments successfully knocked down MMP3 expression and restored full-length FasL to basal levels. E2 treatment of both human and murine primary osteoblasts showed upregulation of MMP3 mRNA expression, and calvarial organ cultures showed increased expression of MMP3 protein and colocalization with the osteoblast-specific RUNX2 after E2 treatment. In addition, osteoblast cell cultures derived from ERαKO mice showed decreased expression of MMP3 but not MMP7 and ADAM10, two known FasL proteases, demonstrating that ERα signaling regulates MMP3. Also, conditioned media of E2-treated calvarial osteoblasts showed an approximate sixfold increase in the concentration of soluble FasL, indicating extensive cleavage, and soluble FasL concentrations were reduced in the presence of a specific MMP3 inhibitor. Finally, to show the role of soluble FasL in osteoclast apoptosis, human osteoclasts were cocultured with MC3T3 osteoblasts. Both a specific MMP3 inhibitor and an MMP inhibitor cocktail preserved osteoclast differentiation and survival in the presence of E2 and demonstrate the necessity of MMP3 for E2-induced osteoclast apoptosis. These experiments further define the molecular mechanism of estrogen's bone-protective effects by inducing osteoclast apoptosis through upregulation of MMP3 and FasL cleavage.

摘要

雌激素对骨骼健康的益处已得到充分证实;然而,雌激素如何发出信号来调节骨形成和吸收的机制还不太清楚。我们在这里表明,17β-雌二醇(E2)诱导破骨细胞凋亡是通过破骨细胞表达的 Fas 配体(FasL)的裂解和溶解来介导的。表达 C 端 EGFP 标记 FasL 的 U2OS-ERα 成骨样细胞在 E2 处理后荧光强度降低,表明发生了裂解事件。在存在 E2 的情况下,用特异性 MMP3 抑制剂处理 U2OS-ERα 培养物可阻断 FasL 裂解,并显示 EGFP-FasL+细胞数量增加。siRNA 实验成功敲低了 MMP3 表达,并将 FasL 恢复到基础水平。E2 处理人源和鼠源原代成骨细胞均显示 MMP3 mRNA 表达上调,颅骨器官培养物显示 E2 处理后 MMP3 蛋白表达增加,并与成骨细胞特异性 RUNX2 共定位。此外,从 ERαKO 小鼠获得的成骨细胞培养物显示 MMP3 表达降低,但不降低 MMP7 和 ADAM10 的表达,这两种已知的 FasL 蛋白酶,表明 ERα 信号调节 MMP3。此外,用 E2 处理的颅骨成骨细胞的条件培养基中可溶性 FasL 的浓度增加了约六倍,表明 FasL 发生了广泛的裂解,并且在存在特异性 MMP3 抑制剂的情况下,可溶性 FasL 的浓度降低。最后,为了证明可溶性 FasL 在破骨细胞凋亡中的作用,将人破骨细胞与 MC3T3 成骨细胞共培养。特异性 MMP3 抑制剂和 MMP 抑制剂混合物在 E2 存在的情况下均可保护破骨细胞分化和存活,并证明 MMP3 对 E2 诱导的破骨细胞凋亡是必需的。这些实验进一步通过上调 MMP3 和 FasL 裂解来诱导破骨细胞凋亡,从而明确了雌激素的骨保护作用的分子机制。

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