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急性雌激素缺乏诱导骨重建过程中 ITAM 衔接子信号在骨微环境中的特异性作用

Bone microenvironment specific roles of ITAM adapter signaling during bone remodeling induced by acute estrogen-deficiency.

机构信息

Department of Medicine, VA Medical Center, University of California San Francisco, San Francisco, California, United States of America; Department of Microbiology and Immunology, University of California San Francisco, San Francisco, California, United States of America.

出版信息

PLoS One. 2007 Jul 4;2(7):e586. doi: 10.1371/journal.pone.0000586.

Abstract

Immunoreceptor tyrosine-based activation motif (ITAM) signaling mediated by DAP12 or Fcepsilon receptor Igamma chain (FcRgamma) have been shown to be critical for osteoclast differentiation and maturation under normal physiological conditions. Their function in pathological conditions is unknown. We studied the role of ITAM signaling during rapid bone remodeling induced by acute estrogen-deficiency in wild-type (WT), DAP12-deficient (DAP12-/-), FcRgamma-deficient (FcRgamma-/-) and double-deficient (DAP12-/-FcRgamma-/-) mice. Six weeks after ovariectomy (OVX), DAP12-/-FcRgamma-/- mice showed resistance to lumbar vertebral body (LVB) trabecular bone loss, while WT, DAP12-/- and FcRgamma-/- mice had significant LVB bone loss. In contrast, all ITAM adapter-deficient mice responded to OVX with bone loss in both femur and tibia of approximately 40%, relative to basal bone volumes. Only WT mice developed significant cortical bone loss after OVX. In vitro studies showed microenvironmental changes induced by OVX are indispensable for enhanced osteoclast formation and function. Cytokine changes, including TGFbeta and TNFalpha, were able to induce osteoclastogenesis independent of RANKL in BMMs from WT but not DAP12-/- and DAP12-/-FcRgamma-/- mice. FSH stimulated RANKL-induced osteoclast differentiation from BMMs in WT, but not DAP12-/- and DAP12-/-FcRgamma-/- mice. Our study demonstrates that although ITAM adapter signaling is critical for normal bone remodeling, estrogen-deficiency induces an ITAM adapter-independent bypass mechanism allowing for enhanced osteoclastogenesis and activation in specific bony microenvironments.

摘要

免疫受体酪氨酸激活基序(ITAM)信号转导由 DAP12 或 Fc 受体 Igamma 链(FcRgamma)介导,已被证明在正常生理条件下对破骨细胞分化和成熟至关重要。其在病理条件下的功能尚不清楚。我们研究了 ITAM 信号在急性雌激素缺乏诱导的快速骨重建过程中的作用,研究对象为野生型(WT)、DAP12 缺陷型(DAP12-/-)、FcRgamma 缺陷型(FcRgamma-/-)和双缺陷型(DAP12-/-FcRgamma-/-)小鼠。卵巢切除(OVX)后 6 周,DAP12-/-FcRgamma-/-小鼠对腰椎体(LVB)小梁骨丢失具有抗性,而 WT、DAP12-/-和 FcRgamma-/-小鼠则出现明显的 LVB 骨丢失。相比之下,所有 ITAM 衔接子缺陷型小鼠的股骨和胫骨骨丢失均约为 40%,与基础骨体积相比。只有 WT 小鼠在 OVX 后出现明显的皮质骨丢失。体外研究表明,OVX 诱导的微环境变化对于增强破骨细胞的形成和功能是必不可少的。细胞因子变化,包括 TGFbeta 和 TNFalpha,能够在 WT 而非 DAP12-/-和 DAP12-/-FcRgamma-/-小鼠的骨髓单核细胞中诱导破骨细胞生成,而无需 RANKL。FSH 刺激 WT 骨髓单核细胞中的 RANKL 诱导的破骨细胞分化,但在 DAP12-/-和 DAP12-/-FcRgamma-/-小鼠中则不然。我们的研究表明,尽管 ITAM 衔接子信号对于正常骨重塑至关重要,但雌激素缺乏会诱导一种 ITAM 衔接子非依赖性旁路机制,从而允许在特定的骨微环境中增强破骨细胞生成和激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86c8/1895921/2473062c94f2/pone.0000586.g002.jpg

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