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Nmp4/CIZ 抑制成骨细胞中机械诱导的β-连环蛋白信号活性。

Nmp4/CIZ inhibits mechanically induced beta-catenin signaling activity in osteoblasts.

机构信息

Department of Cellular and Integrative Physiology, Indiana University School of Medicine, Indianapolis, Indiana 46202, USA.

出版信息

J Cell Physiol. 2010 May;223(2):435-41. doi: 10.1002/jcp.22057.

Abstract

Cellular mechanotransduction, the process of converting mechanical signals into biochemical responses within cells, is a critical aspect of bone health. While the effects of mechanical loading on bone are well recognized, elucidating the specific molecular pathways involved in the processing of mechanical signals by bone cells represents a challenge and an opportunity to identify therapeutic strategies to combat bone loss. In this study we have for the first time examined the relationship between the nucleocytoplasmic shuttling transcription factor nuclear matrix protein-4/cas interacting zinc finger protein (Nmp4/CIZ) and beta-catenin signaling in response to a physiologic mechanical stimulation (oscillatory fluid shear stress, OFSS) in osteoblasts. Using calvaria-derived osteoblasts from Nmp4-deficient and wild-type mice, we found that the normal translocation of beta-catenin to the nucleus in osteoblasts that is induced by OFSS is enhanced when Nmp4/CIZ is absent. Furthermore, we found that other aspects of OFSS-induced mechanotransduction generally associated with the beta-catenin signaling pathway, including ERK, Akt, and GSK3beta activity, as well as expression of the beta-catenin-responsive protein cyclin D1 are also enhanced in cells lacking Nmp4/CIZ. Finally, we found that in the absence of Nmp4/CIZ, OFSS-induced cytoskeletal reorganization and the formation of focal adhesions between osteoblasts and the extracellular substrate is qualitatively enhanced, suggesting that Nmp4/CIZ may reduce the sensitivity of bone cells to mechanical stimuli. Together these results provide experimental support for the concept that Nmp4/CIZ plays an inhibitory role in the response of bone cells to mechanical stimulation induced by OFSS.

摘要

细胞力学转导,即将机械信号转化为细胞内生化反应的过程,是骨骼健康的关键方面。虽然机械加载对骨骼的影响已得到充分认识,但阐明骨细胞处理机械信号的具体分子途径仍然是一个挑战,同时也是确定治疗策略以对抗骨丢失的机会。在这项研究中,我们首次研究了核基质蛋白-4/与 Cas 相互作用的锌指蛋白(Nmp4/CIZ)核穿梭转录因子与β-连环蛋白信号通路之间的关系,以应对成骨细胞中的生理机械刺激(振荡液切应力,OFSS)。使用来自 Nmp4 缺陷型和野生型小鼠的颅骨衍生成骨细胞,我们发现 OFSS 诱导的成骨细胞中β-连环蛋白向核内的正常易位在 Nmp4/CIZ 缺失时增强。此外,我们发现 OFSS 诱导的力学转导的其他方面通常与β-连环蛋白信号通路相关,包括 ERK、Akt 和 GSK3β 活性,以及β-连环蛋白反应蛋白 cyclin D1 的表达,在缺乏 Nmp4/CIZ 的细胞中也增强。最后,我们发现,在缺乏 Nmp4/CIZ 的情况下,OFSS 诱导的细胞骨架重排和成骨细胞与细胞外基质之间的焦点粘连的形成在质量上增强,这表明 Nmp4/CIZ 可能降低骨细胞对机械刺激的敏感性。这些结果共同为 Nmp4/CIZ 在骨细胞对 OFSS 诱导的机械刺激的反应中发挥抑制作用的概念提供了实验支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a86/2872931/41b01e2abd6b/nihms202441f1.jpg

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