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对活跃吸收的破骨细胞进行全面的分析鉴定出了由骨基质调节的关键信号通路。

Comprehensive profiling analysis of actively resorbing osteoclasts identifies critical signaling pathways regulated by bone substrate.

作者信息

Purdue P Edward, Crotti Tania N, Shen Zhenxin, Swantek Jennifer, Li Jun, Hill Jonathan, Hanidu Adedayo, Dimock Janice, Nabozny Gerald, Goldring Steven R, McHugh Kevin P

机构信息

Hospital for Special Surgery, New York, NY 10021.

1] School of Medical Sciences, The University of Adelaide, Adelaide 5005, Australia [2] Beth Israel Deaconess Medical Center, Boston, MA 02215.

出版信息

Sci Rep. 2014 Dec 23;4:7595. doi: 10.1038/srep07595.

Abstract

As the only cells capable of efficiently resorbing bone, osteoclasts are central mediators of both normal bone remodeling and pathologies associates with excessive bone resorption. However, despite the clear evidence of interplay between osteoclasts and the bone surface in vivo, the role of the bone substrate in regulating osteoclast differentiation and activation at a molecular level has not been fully defined. Here, we present the first comprehensive expression profiles of osteoclasts differentiated on authentic resorbable bone substrates. This analysis has identified numerous critical pathways coordinately regulated by osteoclastogenic cytokines and bone substrate, including the transition from proliferation to differentiation, and sphingosine-1-phosphate signaling. Whilst, as expected, much of this program is dependent upon integrin beta 3, the pre-eminent mediator of osteoclast-bone interaction, a surprisingly significant portion of the bone substrate regulated expression signature is independent of this receptor. Together, these findings identify an important hitherto underappreciated role for bone substrate in osteoclastogenesis.

摘要

作为唯一能够有效吸收骨组织的细胞,破骨细胞是正常骨重塑以及与骨吸收过多相关病理过程的核心介质。然而,尽管体内破骨细胞与骨表面之间相互作用的证据确凿,但骨基质在分子水平上调节破骨细胞分化和激活的作用尚未完全明确。在此,我们展示了在真实可吸收骨基质上分化的破骨细胞的首个全面表达谱。该分析确定了由破骨细胞生成细胞因子和骨基质协同调节的众多关键途径,包括从增殖到分化的转变以及鞘氨醇-1-磷酸信号传导。正如预期的那样,该程序的大部分依赖于整合素β3,即破骨细胞与骨相互作用的主要介质,但令人惊讶的是,骨基质调节的表达特征中有相当一部分独立于该受体。这些发现共同确定了骨基质在破骨细胞生成中迄今未被充分认识的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6252/4274512/34b46ac4866d/srep07595-f1.jpg

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