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磷脂酰肌醇3激酶协同激活MEK/ERK和AKT/NFκB信号通路以维持破骨细胞存活。

Phosphatidylinositol 3-kinase coordinately activates the MEK/ERK and AKT/NFkappaB pathways to maintain osteoclast survival.

作者信息

Gingery Anne, Bradley Elizabeth, Shaw Aubie, Oursler Merry Jo

机构信息

Department of Biochemistry and Molecular Biology, University of Minnesota, Duluth 55812, USA.

出版信息

J Cell Biochem. 2003 May 1;89(1):165-79. doi: 10.1002/jcb.10503.

Abstract

We have examined highly purified osteoclasts that were generated in vitro from murine co-culture of marrow precursors with stromal support cells and have found evidence of activation of the MEK/ERK and AKT/NFkappaB survival pathways. Many mature marrow-derived osteoclasts survived for at least 48 h in culture whether or not they are maintained with stromal cells. Moreover, supplementing purified osteoclasts with RANKL and/or M-CSF had no impact on their survival pattern. In addition, spleen-derived osteoclasts generated with RANKL and M-CSF treatment exhibited a similar survival pattern. Blocking MEK, AKT, or NFkappaB activity resulted in apoptosis of many, but not all, of the osteoclasts in purified marrow-derived osteoclasts, marrow-derived osteoclasts co-cultured with stromal cells, and spleen-derived osteoclasts maintained with RANKL and M-CSF. These data support that both the MEK/ERK and AKT/NFkappaB pathways contribute to osteoclast survival. Since PI3K has been shown to activate either of these pathways, we have examined its role in osteoclast survival. PI3K inhibition caused apoptosis of nearly all osteoclasts in purified and co-cultured marrow-derived osteoclasts and spleen-derived osteoclasts maintained with RANKL and M-CSF. Interestingly, in marrow-derived co-cultures, the apoptotic response was restricted to osteoclasts as there was no evidence of stromal support cell apoptosis. PI3K inhibition also blocked MEK1/2, ERK1/2, and AKT phosphorylation and NFkappaB activation in purified osteoclasts. Simultaneous blockage of both AKT and MEK1/2 caused rapid apoptosis of nearly all osteoclasts, mimicking the response to PI3K inhibition. These data reveal that PI3K coordinately activates two distinct survival pathways that are both important in osteoclast survival.

摘要

我们检测了通过小鼠骨髓前体细胞与基质支持细胞共培养体外生成的高度纯化破骨细胞,发现了MEK/ERK和AKT/NFκB存活通路激活的证据。许多成熟的骨髓来源破骨细胞在培养中至少存活48小时,无论它们是否与基质细胞一起培养。此外,用RANKL和/或M-CSF补充纯化的破骨细胞对其存活模式没有影响。另外,用RANKL和M-CSF处理产生的脾来源破骨细胞表现出相似的存活模式。阻断MEK、AKT或NFκB活性导致纯化的骨髓来源破骨细胞、与基质细胞共培养的骨髓来源破骨细胞以及用RANKL和M-CSF维持的脾来源破骨细胞中许多(但不是全部)破骨细胞凋亡。这些数据支持MEK/ERK和AKT/NFκB通路都有助于破骨细胞存活。由于PI3K已被证明可激活这些通路中的任何一条,我们检测了其在破骨细胞存活中的作用。PI3K抑制导致纯化的和共培养的骨髓来源破骨细胞以及用RANKL和M-CSF维持的脾来源破骨细胞中几乎所有破骨细胞凋亡。有趣的是,在骨髓来源的共培养物中,凋亡反应仅限于破骨细胞,因为没有基质支持细胞凋亡的证据。PI3K抑制还阻断了纯化破骨细胞中MEK1/2、ERK1/2和AKT磷酸化以及NFκB激活。同时阻断AKT和MEK1/2导致几乎所有破骨细胞迅速凋亡,模拟了对PI3K抑制的反应。这些数据表明PI3K协同激活两条不同的存活通路,它们在破骨细胞存活中都很重要。

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